{"id":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","slug":"glow","category":"regeneration","status":"active","sortOrder":5,"imageUrl":"https://peptidesdirect.io/media/pep-shop/images/glow__70mg__obsidian-2026-08.jpg","videoUrl":"https://peptidesdirect.io/media/pep-shop/videos/glow.mp4","feedImageUrl":"https://peptidesdirect.io/media/pep-shop/images/glow__packshot__obsidian-2026-08.jpg","publicCode":"TY14N2W2","createdAt":"2026-02-27T09:40:42.415Z","updatedAt":"2026-08-18T12:46:49.748Z","translations":[{"id":"1cc69ba3-c2e5-44c1-82b7-85a1597a6cfc","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","locale":"es","name":"GLOW","description":"<ProductHighlights>\n  <Highlight icon=\"atom\" title=\"Tres péptidos, un vial\">\n    GHK-Cu, BPC-157 y TB-500, coliofilizados en una proporción fija de masa 50:10:10, 70 mg en total. Las cantidades por componente figuran en la especificación del material más abajo.\n  </Highlight>\n  <Highlight icon=\"dna\" title=\"GHK-Cu: síntesis de colágeno en cultivo\">\n    Los estudios en fibroblastos midieron la síntesis de colágeno en concentraciones de picomolar a nanomolar, junto con el número de células (PMID 3169264).\n  </Highlight>\n  <Highlight icon=\"shield\" title=\"BPC-157: pentadecapéptido gástrico\">\n    Una secuencia de 15 residuos derivada de una proteína del jugo gástrico, estudiada en modelos de roedores con la angiogénesis y la señalización de factores de crecimiento como mecanismo propuesto.\n  </Highlight>\n  <Highlight icon=\"heart\" title=\"TB-500: timosina beta-4 de longitud completa\">\n    El péptido completo de 43 aminoácidos, confirmado por CoA, no el fragmento corto Ac-LKKTETQ que se vende en otros lugares bajo el mismo nombre. Se une a la G-actina, el monómero del citoesqueleto de actina.\n  </Highlight>\n  <Highlight icon=\"leaf\" title=\"Cifras de CoA por componente\">\n    El informe del lote indica el contenido medido para cada uno de los tres péptidos por separado, la única forma útil de certificar un vial multicomponente.\n  </Highlight>\n  <Highlight icon=\"microscope\" title=\"Estudiados por separado, no como mezcla\">\n    No se identificó ningún estudio que probara esta combinación de tres péptidos en ninguna especie. La proporción es una decisión de formulación, no un hallazgo.\n  </Highlight>\n</ProductHighlights>\n\n<ResearchTags title=\"Áreas de investigación\">\n  <Tag>Complejo de cobre</Tag>\n  <Tag>Síntesis de colágeno</Tag>\n  <Tag>Unión a actina</Tag>\n  <Tag>Angiogénesis</Tag>\n  <Tag>Migración celular</Tag>\n  <Tag>Modelos en roedores</Tag>\n</ResearchTags>\n\n## Qué es GLOW\n\nGLOW es una mezcla de investigación de tres péptidos en un único vial liofilizado: GHK-Cu, BPC-157 y TB-500 en una proporción fija de masa 50:10:10, 70 mg en total. Los tres se liofilizan juntos, de modo que esa proporción queda fijada en la formulación y no puede cambiarse tras la reconstitución.\n\nEl GHK-Cu es el complejo de cobre(II) del tripéptido humano natural glicil-histidil-lisina, estudiado principalmente en cultivo de fibroblastos y en piel ex vivo. El BPC-157 es una secuencia de 15 aminoácidos derivada de la proteína del jugo gástrico BPGP, estudiada en modelos de roedores. El TB-500 es la timosina beta-4 de longitud completa, una proteína de unión a actina de 43 aminoácidos presente en la mayoría de los tipos celulares; nuestro material está confirmado por CoA como la secuencia completa y no como el fragmento corto que parte del mercado vende bajo el mismo nombre.\n\nSuministramos GLOW como polvo liofilizado, solo para investigación de laboratorio. En solución adquiere un tono tenue de azul a azul verdoso, que proviene del ion de cobre del GHK-Cu y de nada más.\n\n## Cómo funciona\n\nAquí hay tres mecanismos distintos, uno por componente, y proceden de tres bibliografías separadas.\n\n**El GHK-Cu** une cobre y lo presenta a las células. El cobre es el cofactor de la lisil oxidasa, que entrecruza el colágeno, y de la superóxido dismutasa. En fibroblastos cutáneos humanos cultivados, la síntesis de colágeno se midió en concentraciones de picomolar a nanomolar junto con el número de células, de modo que la variable fue la producción por célula (PMID 3169264). La bibliografía más amplia de expresión génica sobre este péptido se revisa en el PMID 29986520.\n\n**El BPC-157** se describe en su bibliografía como actuando a través de la angiogénesis y la señalización de factores de crecimiento, medida en modelos de roedores de tejido conectivo y del revestimiento gástrico. Es inusualmente estable en el jugo gástrico.\n\n**El TB-500** se une a la G-actina, el monómero con el que las células ensamblan el citoesqueleto de actina. Secuestrar parte de esa reserva es el mecanismo molecular detrás de las variables de migración y angiogénesis descritas en sistemas modelo cardíacos, dérmicos y corneales (PMID 36464872).\n\nUn punto debe quedar claro en esta página: no se identificó ningún estudio que probara estos tres péptidos como combinación, en ninguna especie. Cada resultado anterior pertenece a un estudio de un solo componente. Cualquier afirmación sobre los tres actuando conjuntamente es una inferencia y no un dato, razón por la que publicamos cifras de contenido por componente en lugar de una única cifra de pureza combinada.\n\nPara la reconstitución, el disolvente habitual en los protocolos publicados es agua bacteriostática o estéril.\n\n<InlineRelated slug=\"bacteriostatic-water\" label=\"Disolvente habitual para la reconstitución\" />\n\n<SectionDivider />\n\n## Documentación\n\n<QualitySpecs title=\"Especificación del material\">\n  <Spec label=\"Composición\" value=\"GHK-Cu 50 mg + BPC-157 10 mg + TB-500 10 mg, mezcla de grado investigación (70 mg en total)\" />\n  <Spec label=\"Pureza\" value=\"≥98 % (verificado por HPLC, cada componente)\" />\n  <Spec label=\"Método de análisis\" value=\"HPLC + espectrometría de masas\" />\n  <Spec label=\"Forma\" value=\"Polvo liofilizado\" />\n  <Spec label=\"Almacenamiento habitual (sellado)\" value=\"-20 °C a largo plazo, de 2 a 8 °C a corto plazo, protegido de la luz\" />\n  <Spec label=\"Almacenamiento habitual (reconstituido)\" value=\"de 2 a 8 °C, uso habitual en un plazo de 30 días\" />\n  <Spec label=\"CoA\" value=\"Específico de lote, de terceros (Janoshik)\" />\n</QualitySpecs>\n\n<LabReport />\n\n<PubMedRefs title=\"Investigación seleccionada\">\n  <PubMedRef pmid=\"3169264\" title=\"Stimulation of collagen synthesis in fibroblast cultures by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+\">FEBS Lett, 1988; cultivo de fibroblastos cutáneos humanos</PubMedRef>\n  <PubMedRef pmid=\"29986520\" title=\"Regenerative and Protective Actions of the GHK-Cu Peptide in the Light of the New Gene Data\">Int J Mol Sci, 2018; revisión basada en perfiles de expresión génica</PubMedRef>\n  <PubMedRef pmid=\"26236730\" title=\"GHK Peptide as a Natural Modulator of Multiple Cellular Pathways in Skin Regeneration\">Biomed Res Int, 2015; revisión de datos de colágeno y vías inmunitarias</PubMedRef>\n  <PubMedRef pmid=\"40672369\" title=\"Exploring the beneficial effects of GHK-Cu on an experimental model of colitis and the underlying mechanisms\">Front Pharmacol, 2025; modelo en ratones, marcadores de vías inflamatorias</PubMedRef>\n  <PubMedRef pmid=\"41754849\" title=\"Tendon, Ligament, and Muscle Injury, Osteotendinous, Myotendinous, and Muscle-to-Bone Junction Therapy Perspectives with Growth Factors and Stable Gastric Pentadecapeptide BPC 157-A Review\">Revisión de la bibliografía de modelos en roedores</PubMedRef>\n  <PubMedRef pmid=\"40131143\" title=\"Safety of Intravenous Infusion of BPC157 in Humans: A Pilot Study\">2025; primer estudio piloto de seguridad en humanos, n pequeña</PubMedRef>\n  <PubMedRef pmid=\"36464872\" title=\"Thymosin β4 and Actin: Binding Modes, Biological Functions and Clinical Applications\">2023; revisión canónica del mecanismo de unión a actina</PubMedRef>\n</PubMedRefs>\n\n<Callout type=\"warning\" title=\"Solo para uso en investigación\">\nEste material se vende exclusivamente para uso en investigación in vitro y de laboratorio. No está destinado al consumo humano ni animal, ni a aplicaciones médicas, cosméticas o domésticas. Apto únicamente para entornos de laboratorio profesionales.\n</Callout>","shortDescription":"GLOW es un vial coliofilizado con GHK-Cu, BPC-157 y TB-500 en una proporción fija de masa 50:10:10, 70 mg en total. Cada péptido cuenta con su propia bibliografía publicada; ningún estudio ha probado los tres juntos. Contenido por componente en el CoA del lote.","metaTitle":"Comprar Mezcla GLOW (GHK-Cu, BPC-157, TB-500) | Envío UE","metaDescription":"GLOW: GHK-Cu 50 mg, BPC-157 10 mg y TB-500 10 mg coliofilizados. CoA Janoshik por componente, envío UE. Solo para investigación in vitro."},{"id":"2bdf8ea4-2365-4ac3-bd94-e0a42b11cb89","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","locale":"fi","name":"GLOW","description":"<ProductHighlights>\n  <Highlight icon=\"atom\" title=\"Kolme peptidiä, yksi pullo\">\n    GHK-Cu, BPC-157 ja TB-500, yhdessä lyofilisoituna kiinteässä 50:10:10-massasuhteessa, yhteensä 70 mg. Komponenttikohtaiset määrät ovat alla materiaalin spesifikaatiossa.\n  </Highlight>\n  <Highlight icon=\"dna\" title=\"GHK-Cu: kollageenisynteesi viljelmässä\">\n    Fibroblastitutkimukset mittasivat kollageenisynteesiä pikomolaarisista nanomolaarisiin pitoisuuksiin, solumäärän ohella (PMID 3169264).\n  </Highlight>\n  <Highlight icon=\"shield\" title=\"BPC-157: mahalaukun pentadekapeptidi\">\n    15 aminohappotähteen sekvenssi, joka on peräisin mahanesteen proteiinista, tutkittu jyrsijämalleissa ehdotetulla mekanismilla, joka koskee angiogeneesiä ja kasvutekijäsignalointia.\n  </Highlight>\n  <Highlight icon=\"heart\" title=\"TB-500: täyspitkä tymosiini beeta-4\">\n    Täydellinen 43 aminohapon peptidi, CoA-vahvistettu, ei lyhyt Ac-LKKTETQ-fragmentti, jota myydään muualla samalla nimellä. Se sitoutuu G-aktiiniin, aktiinitukirangan monomeeriin.\n  </Highlight>\n  <Highlight icon=\"leaf\" title=\"Komponenttikohtaiset CoA-luvut\">\n    Eräraportti ilmoittaa kunkin kolmen peptidin mitatun pitoisuuden erikseen, mikä on ainoa mielekäs tapa sertifioida moniosainen pullo.\n  </Highlight>\n  <Highlight icon=\"microscope\" title=\"Tutkittu erikseen, ei sekoituksena\">\n    Yhtään tutkimusta, jossa tätä kolmen peptidin yhdistelmää olisi testattu millään lajilla, ei tunnistettu. Suhde on formulointivalinta, ei löydös.\n  </Highlight>\n</ProductHighlights>\n\n<ResearchTags title=\"Tutkimusalueet\">\n  <Tag>Kuparikompleksi</Tag>\n  <Tag>Kollageenisynteesi</Tag>\n  <Tag>Aktiiniin sitoutuminen</Tag>\n  <Tag>Angiogeneesi</Tag>\n  <Tag>Solujen migraatio</Tag>\n  <Tag>Jyrsijämallit</Tag>\n</ResearchTags>\n\n## Mitä GLOW on\n\nGLOW on kolmen peptidin tutkimussekoitus yhdessä lyofilisoidussa pullossa: GHK-Cu, BPC-157 ja TB-500 kiinteässä 50:10:10-massasuhteessa, yhteensä 70 mg. Nämä kolme pakastekuivataan yhdessä, joten suhde on kiinteä formuloinnista lähtien eikä sitä voi muuttaa liuottamisen jälkeen.\n\nGHK-Cu on ihmisen luonnollisen tripeptidin glysyyli-histidyyli-lysiinin kupari(II)-kompleksi, tutkittu pääasiassa fibroblastiviljelmässä ja ex vivo -ihossa. BPC-157 on 15 aminohapon sekvenssi, joka on peräisin mahanesteen proteiinista BPGP, tutkittu jyrsijämalleissa. TB-500 on täyspitkä tymosiini beeta-4, 43 aminohapon aktiiniin sitoutuva proteiini, jota esiintyy useimmissa solutyypeissä; materiaalimme on CoA-vahvistettu täydeksi sekvenssiksi eikä lyhyeksi fragmentiksi, jota osa markkinoista myy samalla nimellä.\n\nToimitamme GLOW:n pakastekuivattuna jauheena yksinomaan laboratoriotutkimukseen. Liuoksessa siihen tulee hienoinen sininen tai sinivihreä sävy, joka johtuu GHK-Cu:n kupari-ionista eikä mistään muusta.\n\n## Miten se toimii\n\nTässä on kolme erillistä mekanismia, yksi kullekin komponentille, ja ne ovat peräisin kolmesta erillisestä kirjallisuudesta.\n\n**GHK-Cu** sitoutuu kupariin ja esittää sen soluille. Kupari on lysyylioksidaasin ja superoksididismutaasin kofaktori. Lysyylioksidaasi ristisitoo kollageenia. Viljellyissä ihmisen ihon fibroblasteissa kollageenisynteesiä mitattiin pikomolaarisista nanomolaarisiin pitoisuuksiin solumäärän ohella, joten päätemuuttuja oli tuotto solua kohti (PMID 3169264). Tämän peptidin laajempi geeni-ilmentymiskirjallisuus on katsottu artikkelissa PMID 29986520.\n\n**BPC-157**:n kuvataan kirjallisuudessaan toimivan angiogeneesin ja kasvutekijäsignaloinnin kautta, mitattuna sidekudoksen ja mahalaukun limakalvon jyrsijämalleissa. Se on epätavallisen stabiili mahanesteessä.\n\n**TB-500** sitoutuu G-aktiiniin, monomeeriin, josta solut kokoavat aktiinitukirangan. Osan tuosta varannosta sitominen on molekulaarinen mekanismi, joka on migraatio- ja angiogeneesipäätemuuttujien taustalla sydän-, iho- ja sarveiskalvomallijärjestelmissä (PMID 36464872).\n\nYksi seikka kuuluu sivulle suoraan sanottuna: yhtään tutkimusta, jossa näitä kolmea peptidiä olisi testattu yhdistelmänä millään lajilla, ei tunnistettu. Jokainen yllä oleva tulos kuuluu yksikomponenttiseen tutkimukseen. Kaikki, mitä sanotaan kolmen yhteisvaikutuksesta, on päättelyä eikä dataa, minkä vuoksi julkaisemme myös komponenttikohtaiset pitoisuusluvut yhden sekoitetun puhtausluvun sijaan.\n\nLiuottamiseen julkaistuissa protokollissa käytetään vakioliuottimena bakteriostaattista tai steriiliä vettä.\n\n<InlineRelated slug=\"bacteriostatic-water\" label=\"Vakioliuotin liuottamiseen\" />\n\n<SectionDivider />\n\n## Dokumentaatio\n\n<QualitySpecs title=\"Materiaalin spesifikaatio\">\n  <Spec label=\"Koostumus\" value=\"GHK-Cu 50mg + BPC-157 10mg + TB-500 10mg, tutkimuslaadun sekoitus (yhteensä 70mg)\" />\n  <Spec label=\"Puhtaus\" value=\"≥98% (HPLC-varmennettu, jokainen komponentti)\" />\n  <Spec label=\"Testausmenetelmä\" value=\"HPLC + massaspektrometria\" />\n  <Spec label=\"Muoto\" value=\"Lyofilisoitu jauhe\" />\n  <Spec label=\"Tyypillinen säilytys (suljettuna)\" value=\"-20 °C pitkäaikaisesti, 2 - 8 °C lyhytaikaisesti, valolta suojattuna\" />\n  <Spec label=\"Tyypillinen säilytys (liuotettuna)\" value=\"2 - 8 °C, käytetään tyypillisesti 30 päivän kuluessa\" />\n  <Spec label=\"CoA\" value=\"Eräkohtainen, kolmas osapuoli (Janoshik)\" />\n</QualitySpecs>\n\n<LabReport />\n\n<PubMedRefs title=\"Valittu tutkimus\">\n  <PubMedRef pmid=\"3169264\" title=\"Stimulation of collagen synthesis in fibroblast cultures by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+\">FEBS Lett, 1988; ihmisen ihon fibroblastiviljelmä</PubMedRef>\n  <PubMedRef pmid=\"29986520\" title=\"Regenerative and Protective Actions of the GHK-Cu Peptide in the Light of the New Gene Data\">Int J Mol Sci, 2018; katsaus, joka perustuu geeni-ilmentymisprofiileihin</PubMedRef>\n  <PubMedRef pmid=\"26236730\" title=\"GHK Peptide as a Natural Modulator of Multiple Cellular Pathways in Skin Regeneration\">Biomed Res Int, 2015; kollageeni- ja immuunireittidatan katsaus</PubMedRef>\n  <PubMedRef pmid=\"40672369\" title=\"Exploring the beneficial effects of GHK-Cu on an experimental model of colitis and the underlying mechanisms\">Front Pharmacol, 2025; hiirimalli, tulehdusreitin markkerit</PubMedRef>\n  <PubMedRef pmid=\"41754849\" title=\"Tendon, Ligament, and Muscle Injury, Osteotendinous, Myotendinous, and Muscle-to-Bone Junction Therapy Perspectives with Growth Factors and Stable Gastric Pentadecapeptide BPC 157-A Review\">Jyrsijämallikirjallisuuden katsaus</PubMedRef>\n  <PubMedRef pmid=\"40131143\" title=\"Safety of Intravenous Infusion of BPC157 in Humans: A Pilot Study\">2025; ensimmäinen ihmisen turvallisuuspilotti, pieni otoskoko</PubMedRef>\n  <PubMedRef pmid=\"36464872\" title=\"Thymosin β4 and Actin: Binding Modes, Biological Functions and Clinical Applications\">2023; kanoninen aktiiniin sitoutumisen mekanismikatsaus</PubMedRef>\n</PubMedRefs>\n\n<Callout type=\"warning\" title=\"Vain tutkimuskäyttöön\">\nTätä materiaalia myydään yksinomaan in vitro -tutkimukseen ja laboratoriokäyttöön. Ei ole tarkoitettu ihmisten tai eläinten nautittavaksi eikä lääketieteelliseen, kosmeettiseen tai kotitalouskäyttöön. Soveltuu vain ammattimaiseen laboratorioympäristöön.\n</Callout>","shortDescription":"GLOW on yhdessä lyofilisoitu pullo GHK-Cu:ta, BPC-157:ää ja TB-500:aa kiinteässä 50:10:10-massasuhteessa, yhteensä 70 mg. Kullakin peptidillä on oma julkaistu kirjallisuutensa; yksikään tutkimus ei ole testannut näitä kolmea yhdessä. Komponenttikohtainen pitoisuus eräkohtaisessa CoA:ssa.","metaTitle":"Osta GLOW-sekoitus (GHK-Cu, BPC-157, TB-500) | EU-toimitus","metaDescription":"GLOW: yhdessä lyofilisoitu GHK-Cu 50 mg, BPC-157 10 mg, TB-500 10 mg. Komponenttikohtainen Janoshik CoA, EU-toimitus. Vain in vitro -tutkimukseen."},{"id":"f8e1d80c-5615-423e-811b-03e36de31d8a","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","locale":"sv","name":"GLOW","description":"<ProductHighlights>\n  <Highlight icon=\"atom\" title=\"Tre peptider, en flaska\">\n    GHK-Cu, BPC-157 och TB-500, samfrystorkade i ett fast massförhållande 50:10:10, totalt 70 mg. Mängder per komponent finns i materialspecifikationen nedan.\n  </Highlight>\n  <Highlight icon=\"dna\" title=\"GHK-Cu: kollagensyntes i kultur\">\n    Fibroblaststudier mätte kollagensyntes över koncentrationer från pikomolärt till nanomolärt, tillsammans med cellantal (PMID 3169264).\n  </Highlight>\n  <Highlight icon=\"shield\" title=\"BPC-157: gastrisk pentadekapeptid\">\n    En 15-rest-sekvens härledd från ett protein i magsaft, studerad i gnagarmodeller med angiogenes och tillväxtfaktorsignalering som föreslagen mekanism.\n  </Highlight>\n  <Highlight icon=\"heart\" title=\"TB-500: fullängds tymosin beta-4\">\n    Den kompletta 43-aminosyra-peptiden, CoA-bekräftad, inte det korta Ac-LKKTETQ-fragmentet som säljs på annat håll under samma namn. Den binder G-aktin, monomeren i aktincytoskelettet.\n  </Highlight>\n  <Highlight icon=\"leaf\" title=\"CoA-siffror per komponent\">\n    Batchrapporten anger uppmätt innehåll för var och en av de tre peptiderna separat, vilket är det enda meningsfulla sättet att certifiera en flerkomponentflaska.\n  </Highlight>\n  <Highlight icon=\"microscope\" title=\"Studerade separat, inte som blandning\">\n    Ingen studie som testat denna tre-peptidkombination i någon art identifierades. Förhållandet är ett formuleringsval, inte ett fynd.\n  </Highlight>\n</ProductHighlights>\n\n<ResearchTags title=\"Forskningsområden\">\n  <Tag>Kopparkomplex</Tag>\n  <Tag>Kollagensyntes</Tag>\n  <Tag>Aktinbindning</Tag>\n  <Tag>Angiogenes</Tag>\n  <Tag>Cellmigration</Tag>\n  <Tag>Gnagarmodeller</Tag>\n</ResearchTags>\n\n## Vad är GLOW\n\nGLOW är en trepeptidblandning för forskning i en enda lyofiliserad flaska: GHK-Cu, BPC-157 och TB-500 i ett fast massförhållande 50:10:10, totalt 70 mg. De tre frystorkas tillsammans, så det förhållandet är fastställt vid formuleringen och kan inte ändras efter rekonstitution.\n\nGHK-Cu är koppar(II)-komplexet av den naturliga humana tripeptiden glycyl-histidyl-lysin, studerad huvudsakligen i fibroblastkultur och i ex vivo hud. BPC-157 är en 15-aminosyra-sekvens härledd från magsaftproteinet BPGP, studerad i gnagarmodeller. TB-500 är fullängds tymosin beta-4, ett 43-aminosyra aktinbindande protein som finns i de flesta celltyper; vårt material är CoA-bekräftat som den kompletta sekvensen snarare än det korta fragment som en del av marknaden säljer under samma namn.\n\nVi levererar GLOW som ett frystorkat pulver, endast för laboratorieforskning. I lösning får det en svag blå till blågrön nyans, som kommer från kopparjonen i GHK-Cu och från inget annat.\n\n## Hur det fungerar\n\nDet finns tre separata mekanismer här, en per komponent, och de kommer från tre separata litteraturer.\n\n**GHK-Cu** binder koppar och presenterar den för celler. Koppar är kofaktorn för lysyloxidas, som tvärbinder kollagen, och för superoxiddismutas. I odlade humana hudfibroblaster mättes kollagensyntes över koncentrationer från pikomolärt till nanomolärt tillsammans med cellantal, så utfallsmåttet var produktion per cell (PMID 3169264). Den bredare genuttryckslitteraturen om denna peptid granskas i PMID 29986520.\n\n**BPC-157** beskrivs i sin litteratur som verkande genom angiogenes och tillväxtfaktorsignalering, uppmätt i gnagarmodeller av bindväv och av magslemhinnan. Den är ovanligt stabil i magsaft.\n\n**TB-500** binder G-aktin, monomeren från vilken celler bygger upp aktincytoskelettet. Att binda en del av den poolen är den molekylära mekanismen bakom migrations- och angiogenesmåtten som rapporterats i kardiella, dermala och korneala modellsystem (PMID 36464872).\n\nEn punkt förtjänar att sägas rakt ut: ingen studie som testat dessa tre peptider som en kombination, i någon art, identifierades. Varje resultat ovan tillhör en enkomponentstudie. Allt som sägs om att de tre verkar tillsammans är inferens snarare än data, vilket också är anledningen till att vi publicerar innehållssiffror per komponent i stället för ett kombinerat renhetstal.\n\nFör rekonstitution är standardlösningsmedlet i publicerade protokoll bakteriostatiskt eller sterilt vatten.\n\n<InlineRelated slug=\"bacteriostatic-water\" label=\"Standardlösningsmedel för rekonstitution\" />\n\n<SectionDivider />\n\n## Dokumentation\n\n<QualitySpecs title=\"Materialspecifikation\">\n  <Spec label=\"Sammansättning\" value=\"GHK-Cu 50mg + BPC-157 10mg + TB-500 10mg, forskningsblandning (totalt 70mg)\" />\n  <Spec label=\"Renhet\" value=\"≥98% (HPLC-verifierad, varje komponent)\" />\n  <Spec label=\"Testmetod\" value=\"HPLC + masspektrometri\" />\n  <Spec label=\"Form\" value=\"Lyofiliserat pulver\" />\n  <Spec label=\"Vanlig förvaring (förseglad)\" value=\"-20 °C långtid, 2 till 8 °C korttid, ljusskyddad\" />\n  <Spec label=\"Vanlig förvaring (rekonstituerad)\" value=\"2 till 8 °C, används vanligen inom 30 dagar\" />\n  <Spec label=\"CoA\" value=\"Batchspecifik, tredjepart (Janoshik)\" />\n</QualitySpecs>\n\n<LabReport />\n\n<PubMedRefs title=\"Utvalda studier\">\n  <PubMedRef pmid=\"3169264\" title=\"Stimulation of collagen synthesis in fibroblast cultures by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+\">FEBS Lett, 1988; human hudfibroblastkultur</PubMedRef>\n  <PubMedRef pmid=\"29986520\" title=\"Regenerative and Protective Actions of the GHK-Cu Peptide in the Light of the New Gene Data\">Int J Mol Sci, 2018; översikt byggd på genuttrycksprofiler</PubMedRef>\n  <PubMedRef pmid=\"26236730\" title=\"GHK Peptide as a Natural Modulator of Multiple Cellular Pathways in Skin Regeneration\">Biomed Res Int, 2015; översikt av kollagen- och immunvägsdata</PubMedRef>\n  <PubMedRef pmid=\"40672369\" title=\"Exploring the beneficial effects of GHK-Cu on an experimental model of colitis and the underlying mechanisms\">Front Pharmacol, 2025; musmodell, inflammatoriska signalvägsmarkörer</PubMedRef>\n  <PubMedRef pmid=\"41754849\" title=\"Tendon, Ligament, and Muscle Injury, Osteotendinous, Myotendinous, and Muscle-to-Bone Junction Therapy Perspectives with Growth Factors and Stable Gastric Pentadecapeptide BPC 157-A Review\">Översikt av gnagarmodell-litteraturen</PubMedRef>\n  <PubMedRef pmid=\"40131143\" title=\"Safety of Intravenous Infusion of BPC157 in Humans: A Pilot Study\">2025; första säkerhetspilotstudien på människa, litet n</PubMedRef>\n  <PubMedRef pmid=\"36464872\" title=\"Thymosin β4 and Actin: Binding Modes, Biological Functions and Clinical Applications\">2023; kanonisk översikt av aktinbindningsmekanismen</PubMedRef>\n</PubMedRefs>\n\n<Callout type=\"warning\" title=\"Endast för forskningsbruk\">\nDetta material säljs uteslutande för in vitro-forskning och laboratoriebruk. Inte avsett för konsumtion av människor eller djur, medicinsk, kosmetisk eller hushållsanvändning. Endast lämpligt för professionella laboratoriemiljöer.\n</Callout>","shortDescription":"GLOW är en samfrystorkad flaska med GHK-Cu, BPC-157 och TB-500 i ett fast massförhållande 50:10:10, totalt 70 mg. Varje peptid har sin egen publicerade litteratur; ingen studie har testat de tre tillsammans. Innehåll per komponent på batch-CoA.","metaTitle":"Köp GLOW-blandning (GHK-Cu, BPC-157, TB-500) | EU-frakt","metaDescription":"GLOW: samfrystorkat GHK-Cu 50 mg, BPC-157 10 mg, TB-500 10 mg. Janoshik CoA per komponent, EU-frakt. Endast för in vitro-forskning."},{"id":"a4d21ee0-39ae-4dad-91c1-656bbfc67da0","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","locale":"en","name":"GLOW","description":"<ProductHighlights>\n  <Highlight icon=\"atom\" title=\"Three peptides, one vial\">\n    GHK-Cu, BPC-157 and TB-500, co-lyophilized at a fixed 50:10:10 mass ratio, 70 mg total. Per-component amounts are on the material specification below.\n  </Highlight>\n  <Highlight icon=\"dna\" title=\"GHK-Cu: collagen synthesis in culture\">\n    Fibroblast studies measured collagen synthesis across picomolar to nanomolar concentrations, alongside cell number (PMID 3169264).\n  </Highlight>\n  <Highlight icon=\"shield\" title=\"BPC-157: gastric pentadecapeptide\">\n    A 15-residue sequence derived from a protein in gastric juice, studied in rodent models with angiogenesis and growth-factor signalling as the proposed mechanism.\n  </Highlight>\n  <Highlight icon=\"heart\" title=\"TB-500: full-length thymosin beta-4\">\n    The complete 43-amino-acid peptide, CoA-confirmed, not the short Ac-LKKTETQ fragment sold elsewhere under the same name. It binds G-actin, the monomer of the actin cytoskeleton.\n  </Highlight>\n  <Highlight icon=\"leaf\" title=\"Per-component CoA figures\">\n    The batch report states measured content for each of the three peptides separately, which is the only meaningful way to certify a multi-component vial.\n  </Highlight>\n  <Highlight icon=\"microscope\" title=\"Studied separately, not as a blend\">\n    No study testing this three-peptide combination in any species was identified. The ratio is a formulation choice, not a finding.\n  </Highlight>\n</ProductHighlights>\n\n<ResearchTags title=\"Research areas\">\n  <Tag>Copper complex</Tag>\n  <Tag>Collagen synthesis</Tag>\n  <Tag>Actin binding</Tag>\n  <Tag>Angiogenesis</Tag>\n  <Tag>Cell migration</Tag>\n  <Tag>Rodent models</Tag>\n</ResearchTags>\n\n## What is GLOW\n\nGLOW is a three-peptide research blend in a single lyophilized vial: GHK-Cu, BPC-157 and TB-500 at a fixed 50:10:10 mass ratio, 70 mg in total. The three are freeze-dried together, so that ratio is fixed at formulation and cannot be changed after reconstitution.\n\nGHK-Cu is the copper(II) complex of the natural human tripeptide glycyl-histidyl-lysine, studied mainly in fibroblast culture and in ex vivo skin. BPC-157 is a 15-amino-acid sequence derived from the gastric-juice protein BPGP, studied in rodent models. TB-500 is full-length thymosin beta-4, a 43-amino-acid actin-binding protein present in most cell types; our material is CoA-confirmed as the complete sequence rather than the short fragment some of the market sells under the same name.\n\nWe supply GLOW as a freeze-dried powder for laboratory research only. In solution it takes on a faint blue to blue-green tint, which comes from the copper ion in GHK-Cu and from nothing else.\n\n## How it works\n\nThere are three separate mechanisms here, one per component, and they come from three separate literatures.\n\n**GHK-Cu** binds copper and presents it to cells. Copper is the cofactor of lysyl oxidase, which cross-links collagen, and of superoxide dismutase. In cultured human skin fibroblasts, collagen synthesis was measured across picomolar to nanomolar concentrations alongside cell number, so the readout was output per cell (PMID 3169264). The wider gene-expression literature on this peptide is reviewed in PMID 29986520.\n\n**BPC-157** is described in its literature as acting through angiogenesis and growth-factor signalling, measured in rodent models of connective tissue and of the gastric lining. It is unusually stable in gastric juice.\n\n**TB-500** binds G-actin, the monomer from which cells assemble the actin cytoskeleton. Sequestering part of that pool is the molecular mechanism behind the migration and angiogenesis endpoints reported in cardiac, dermal and corneal model systems (PMID 36464872).\n\nOne point belongs on the page plainly: no study testing these three peptides as a combination, in any species, was identified. Each result above belongs to a single-component study. Anything said about the three acting jointly is inference rather than data, which is also why we publish per-component content figures instead of one blended purity number.\n\nFor reconstitution, the standard solvent in published protocols is bacteriostatic or sterile water.\n\n<InlineRelated slug=\"bacteriostatic-water\" label=\"Standard solvent for reconstitution\" />\n\n<SectionDivider />\n\n## Documentation\n\n<QualitySpecs title=\"Material specification\">\n  <Spec label=\"Composition\" value=\"GHK-Cu 50mg + BPC-157 10mg + TB-500 10mg, research-grade blend (70mg total)\" />\n  <Spec label=\"Purity\" value=\"≥98% (HPLC verified, each component)\" />\n  <Spec label=\"Test method\" value=\"HPLC + mass spectrometry\" />\n  <Spec label=\"Form\" value=\"Lyophilized powder\" />\n  <Spec label=\"Typical storage (sealed)\" value=\"-20 °C long-term, 2 to 8 °C short-term, light-protected\" />\n  <Spec label=\"Typical storage (reconstituted)\" value=\"2 to 8 °C, commonly used within 30 days\" />\n  <Spec label=\"CoA\" value=\"Batch-specific, third-party (Janoshik)\" />\n</QualitySpecs>\n\n<LabReport />\n\n<PubMedRefs title=\"Selected research\">\n  <PubMedRef pmid=\"3169264\" title=\"Stimulation of collagen synthesis in fibroblast cultures by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+\">FEBS Lett, 1988; human skin fibroblast culture</PubMedRef>\n  <PubMedRef pmid=\"29986520\" title=\"Regenerative and Protective Actions of the GHK-Cu Peptide in the Light of the New Gene Data\">Int J Mol Sci, 2018; review built on gene-expression profiles</PubMedRef>\n  <PubMedRef pmid=\"26236730\" title=\"GHK Peptide as a Natural Modulator of Multiple Cellular Pathways in Skin Regeneration\">Biomed Res Int, 2015; review of collagen and immune-pathway data</PubMedRef>\n  <PubMedRef pmid=\"40672369\" title=\"Exploring the beneficial effects of GHK-Cu on an experimental model of colitis and the underlying mechanisms\">Front Pharmacol, 2025; mouse model, inflammatory pathway markers</PubMedRef>\n  <PubMedRef pmid=\"41754849\" title=\"Tendon, Ligament, and Muscle Injury, Osteotendinous, Myotendinous, and Muscle-to-Bone Junction Therapy Perspectives with Growth Factors and Stable Gastric Pentadecapeptide BPC 157-A Review\">Review of the rodent model literature</PubMedRef>\n  <PubMedRef pmid=\"40131143\" title=\"Safety of Intravenous Infusion of BPC157 in Humans: A Pilot Study\">2025; first human safety pilot, small n</PubMedRef>\n  <PubMedRef pmid=\"36464872\" title=\"Thymosin β4 and Actin: Binding Modes, Biological Functions and Clinical Applications\">2023; canonical actin-binding mechanism review</PubMedRef>\n</PubMedRefs>\n\n<Callout type=\"warning\" title=\"Research use only\">\nThis material is sold strictly for in-vitro research and laboratory use. Not intended for human or animal consumption, medical, cosmetic, or household applications. Suitable only for professional laboratory environments.\n</Callout>","shortDescription":"GLOW is a co-lyophilized vial holding GHK-Cu, BPC-157 and TB-500 at a fixed 50:10:10 mass ratio, 70 mg total. Each peptide has its own published literature; no study has tested the three together. Per-component content on the batch CoA.","metaTitle":"Buy GLOW Blend (GHK-Cu, BPC-157, TB-500) | EU Dispatch","metaDescription":"GLOW: co-lyophilized GHK-Cu 50 mg, BPC-157 10 mg, TB-500 10 mg. Per-component Janoshik CoA, EU dispatch. For in-vitro research only."},{"id":"8793d16e-65aa-48c6-8153-b3b6c2d1b14c","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","locale":"nl","name":"GLOW","description":"<ProductHighlights>\n  <Highlight icon=\"atom\" title=\"Drie peptiden, één flacon\">\n    GHK-Cu, BPC-157 en TB-500, co-gelyofiliseerd in een vaste massaverhouding van 50:10:10, 70 mg totaal. Hoeveelheden per component staan in de materiaalspecificatie hieronder.\n  </Highlight>\n  <Highlight icon=\"dna\" title=\"GHK-Cu: collageensynthese in kweek\">\n    Fibroblaststudies maten collageensynthese over picomolaire tot nanomolaire concentraties, naast celaantal (PMID 3169264).\n  </Highlight>\n  <Highlight icon=\"shield\" title=\"BPC-157: gastrisch pentadecapeptide\">\n    Een sequentie van 15 residuen, afgeleid van een eiwit in maagsap, onderzocht in knaagdiermodellen met angiogenese en groeifactorsignalering als voorgesteld mechanisme.\n  </Highlight>\n  <Highlight icon=\"heart\" title=\"TB-500: volledig thymosine bèta-4\">\n    Het volledige peptide van 43 aminozuren, via CoA bevestigd, niet het korte Ac-LKKTETQ-fragment dat elders onder dezelfde naam wordt verkocht. Het bindt G-actine, de monomeer van het actinecytoskelet.\n  </Highlight>\n  <Highlight icon=\"leaf\" title=\"CoA-cijfers per component\">\n    Het chargerapport vermeldt het gemeten gehalte voor elk van de drie peptiden afzonderlijk, de enige zinvolle manier om een flacon met meerdere componenten te certificeren.\n  </Highlight>\n  <Highlight icon=\"microscope\" title=\"Apart onderzocht, niet als blend\">\n    Er is geen studie gevonden die deze combinatie van drie peptiden in enige diersoort testte. De verhouding is een formuleringskeuze, geen bevinding.\n  </Highlight>\n</ProductHighlights>\n\n<ResearchTags title=\"Onderzoeksgebieden\">\n  <Tag>Kopercomplex</Tag>\n  <Tag>Collageensynthese</Tag>\n  <Tag>Actinebinding</Tag>\n  <Tag>Angiogenese</Tag>\n  <Tag>Celmigratie</Tag>\n  <Tag>Knaagdiermodellen</Tag>\n</ResearchTags>\n\n## Wat is GLOW\n\nGLOW is een driepeptiden-onderzoeksblend in één gelyofiliseerde flacon: GHK-Cu, BPC-157 en TB-500 in een vaste massaverhouding van 50:10:10, 70 mg in totaal. De drie worden samen vriesgedroogd, dus die verhouding ligt vast bij de formulering en kan na reconstitutie niet worden gewijzigd.\n\nGHK-Cu is het koper(II)-complex van het natuurlijke humane tripeptide glycyl-histidyl-lysine, voornamelijk onderzocht in fibroblastenkweek en in ex-vivo-huid. BPC-157 is een sequentie van 15 aminozuren, afgeleid van het maagsap-eiwit BPGP, onderzocht in knaagdiermodellen. TB-500 is thymosine bèta-4 in volledige lengte, een actinebindend eiwit van 43 aminozuren dat in de meeste celtypen voorkomt; ons materiaal is via CoA bevestigd als de volledige sequentie in plaats van het korte fragment dat een deel van de markt onder dezelfde naam verkoopt.\n\nWe leveren GLOW als vriesgedroogd poeder, uitsluitend voor laboratoriumonderzoek. In oplossing krijgt het een lichte blauwe tot blauwgroene tint, afkomstig van het koperion in GHK-Cu en van niets anders.\n\n## Hoe het werkt\n\nEr zijn hier drie aparte mechanismen, één per component, en ze komen uit drie aparte literaturen.\n\n**GHK-Cu** bindt koper en presenteert het aan cellen. Koper is de cofactor van lysyloxidase, dat collageen kruislinkt, en van superoxidedismutase. In gekweekte humane huidfibroblasten werd collageensynthese gemeten over picomolaire tot nanomolaire concentraties naast celaantal, zodat de uitkomstmaat output per cel was (PMID 3169264). De bredere genexpressieliteratuur over dit peptide is samengevat in PMID 29986520.\n\n**BPC-157** wordt in de literatuur beschreven als werkend via angiogenese en groeifactorsignalering, gemeten in knaagdiermodellen van bindweefsel en van de maagwand. Het is opvallend stabiel in maagsap.\n\n**TB-500** bindt G-actine, de monomeer waaruit cellen het actinecytoskelet opbouwen. Het onttrekken van een deel van die pool is het moleculaire mechanisme achter de migratie- en angiogenese-eindpunten die worden gerapporteerd in cardiale, dermale en corneale modelsystemen (PMID 36464872).\n\nEén punt hoort duidelijk op deze pagina: er is geen studie gevonden die deze drie peptiden als combinatie testte, in enige diersoort. Elk resultaat hierboven hoort bij een studie met één component. Alles wat wordt gezegd over de drie die gezamenlijk werken, is inferentie in plaats van data, wat ook de reden is waarom we gehaltecijfers per component publiceren in plaats van één gemengd zuiverheidsgetal.\n\nVoor reconstitutie is het standaardoplosmiddel in gepubliceerde protocollen bacteriostatisch of steriel water.\n\n<InlineRelated slug=\"bacteriostatic-water\" label=\"Standaardoplosmiddel voor reconstitutie\" />\n\n<SectionDivider />\n\n## Documentatie\n\n<QualitySpecs title=\"Materiaalspecificatie\">\n  <Spec label=\"Samenstelling\" value=\"GHK-Cu 50 mg + BPC-157 10 mg + TB-500 10 mg, onderzoeksblend (70 mg totaal)\" />\n  <Spec label=\"Zuiverheid\" value=\"≥98% (HPLC-geverifieerd, elke component)\" />\n  <Spec label=\"Testmethode\" value=\"HPLC + massaspectrometrie\" />\n  <Spec label=\"Vorm\" value=\"Gelyofiliseerd poeder\" />\n  <Spec label=\"Gebruikelijke opslag (verzegeld)\" value=\"-20 °C op lange termijn, 2 tot 8 °C op korte termijn, beschermd tegen licht\" />\n  <Spec label=\"Gebruikelijke opslag (gereconstitueerd)\" value=\"2 tot 8 °C, doorgaans binnen 30 dagen gebruikt\" />\n  <Spec label=\"CoA\" value=\"Chargespecifiek, onafhankelijke partij (Janoshik)\" />\n</QualitySpecs>\n\n<LabReport />\n\n<PubMedRefs title=\"Geselecteerd onderzoek\">\n  <PubMedRef pmid=\"3169264\" title=\"Stimulation of collagen synthesis in fibroblast cultures by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+\">FEBS Lett, 1988; humane huidfibroblastenkweek</PubMedRef>\n  <PubMedRef pmid=\"29986520\" title=\"Regenerative and Protective Actions of the GHK-Cu Peptide in the Light of the New Gene Data\">Int J Mol Sci, 2018; review gebouwd op genexpressieprofielen</PubMedRef>\n  <PubMedRef pmid=\"26236730\" title=\"GHK Peptide as a Natural Modulator of Multiple Cellular Pathways in Skin Regeneration\">Biomed Res Int, 2015; overzicht van collageen- en immuunroutegegevens</PubMedRef>\n  <PubMedRef pmid=\"40672369\" title=\"Exploring the beneficial effects of GHK-Cu on an experimental model of colitis and the underlying mechanisms\">Front Pharmacol, 2025; muismodel, ontstekingsroutemarkers</PubMedRef>\n  <PubMedRef pmid=\"41754849\" title=\"Tendon, Ligament, and Muscle Injury, Osteotendinous, Myotendinous, and Muscle-to-Bone Junction Therapy Perspectives with Growth Factors and Stable Gastric Pentadecapeptide BPC 157-A Review\">Overzicht van de knaagdiermodel-literatuur</PubMedRef>\n  <PubMedRef pmid=\"40131143\" title=\"Safety of Intravenous Infusion of BPC157 in Humans: A Pilot Study\">2025; eerste humane veiligheidspilot, kleine n</PubMedRef>\n  <PubMedRef pmid=\"36464872\" title=\"Thymosin β4 and Actin: Binding Modes, Biological Functions and Clinical Applications\">2023; canoniek overzicht van het actinebindingsmechanisme</PubMedRef>\n</PubMedRefs>\n\n<Callout type=\"warning\" title=\"Uitsluitend voor onderzoek\">\nDit materiaal wordt uitsluitend verkocht voor in-vitro onderzoek en laboratoriumgebruik. Niet bedoeld voor menselijke of dierlijke consumptie, medische, cosmetische of huishoudelijke toepassingen. Alleen geschikt voor professionele laboratoriumomgevingen.\n</Callout>","shortDescription":"GLOW is een co-gelyofiliseerde flacon met GHK-Cu, BPC-157 en TB-500 in een vaste massaverhouding van 50:10:10, 70 mg totaal. Elk peptide heeft zijn eigen gepubliceerde literatuur; geen studie heeft de drie samen getest. Gehalte per component op het charge-CoA.","metaTitle":"GLOW-blend (GHK-Cu, BPC-157, TB-500) kopen | EU-verzending","metaDescription":"GLOW: co-gelyofiliseerd GHK-Cu 50 mg, BPC-157 10 mg, TB-500 10 mg. Janoshik-CoA per component, EU-verzending. Alleen in-vitro onderzoek."},{"id":"27a431f3-52dd-4252-8831-8ccc28e605fd","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","locale":"cs","name":"GLOW","description":"<ProductHighlights>\n  <Highlight icon=\"atom\" title=\"Tři peptidy, jedna lahvička\">\n    GHK-Cu, BPC-157 a TB-500, společně lyofilizované v pevném hmotnostním poměru 50:10:10, celkem 70 mg. Množství jednotlivých složek jsou uvedena ve specifikaci materiálu níže.\n  </Highlight>\n  <Highlight icon=\"dna\" title=\"GHK-Cu: syntéza kolagenu v kultuře\">\n    Studie na fibroblastech měřily syntézu kolagenu napříč pikomolárními až nanomolárními koncentracemi, spolu s počtem buněk (PMID 3169264).\n  </Highlight>\n  <Highlight icon=\"shield\" title=\"BPC-157: žaludeční pentadekapeptid\">\n    15zbytková sekvence odvozená z proteinu v žaludeční šťávě, zkoumaná na hlodavčích modelech s angiogenezí a signalizací růstovými faktory jako navrhovaným mechanismem.\n  </Highlight>\n  <Highlight icon=\"heart\" title=\"TB-500: plnodélkový thymosin beta-4\">\n    Kompletní 43aminokyselinový peptid, potvrzený CoA, ne krátký fragment Ac-LKKTETQ prodávaný jinde pod stejným názvem. Váže G-aktin, monomer aktinového cytoskeletu.\n  </Highlight>\n  <Highlight icon=\"leaf\" title=\"CoA čísla pro každou složku\">\n    Zpráva o šarži uvádí naměřený obsah pro každý ze tří peptidů zvlášť, což je jediný smysluplný způsob, jak certifikovat vícesložkovou lahvičku.\n  </Highlight>\n  <Highlight icon=\"microscope\" title=\"Zkoumány zvlášť, ne jako směs\">\n    Nebyla nalezena žádná studie testující tuto trojkombinaci peptidů u jakéhokoli druhu. Poměr je formulační volba, ne zjištění.\n  </Highlight>\n</ProductHighlights>\n\n<ResearchTags title=\"Oblasti výzkumu\">\n  <Tag>Komplex mědi</Tag>\n  <Tag>Syntéza kolagenu</Tag>\n  <Tag>Vazba na aktin</Tag>\n  <Tag>Angiogeneze</Tag>\n  <Tag>Buněčná migrace</Tag>\n  <Tag>Modely hlodavců</Tag>\n</ResearchTags>\n\n## Co je GLOW\n\nGLOW je výzkumná směs tří peptidů v jedné lyofilizované lahvičce: GHK-Cu, BPC-157 a TB-500 v pevném hmotnostním poměru 50:10:10, celkem 70 mg. Všechny tři jsou lyofilizovány společně, takže tento poměr je pevně daný při formulaci a po rekonstituci jej nelze změnit.\n\nGHK-Cu je komplex mědi(II) s přirozeným lidským tripeptidem glycyl-histidyl-lysin, zkoumaný především v kultuře fibroblastů a na ex vivo kůži. BPC-157 je 15aminokyselinová sekvence odvozená z proteinu žaludeční šťávy BPGP, zkoumaná na hlodavčích modelech. TB-500 je plnodélkový thymosin beta-4, 43aminokyselinový protein vázající aktin přítomný ve většině typů buněk; náš materiál má CoA potvrzující kompletní sekvenci, ne krátký fragment, který část trhu prodává pod stejným názvem.\n\nDodáváme GLOW jako mrazem sušený prášek pouze pro laboratorní výzkum. V roztoku nabírá slabý modrý až modrozelený odstín, který pochází z iontu mědi v GHK-Cu a z ničeho jiného.\n\n## Jak to funguje\n\nExistují zde tři samostatné mechanismy, jeden pro každou složku, a pocházejí ze tří samostatných literatur.\n\n**GHK-Cu** váže měď a předává ji buňkám. Měď je kofaktorem lysyloxidázy, která síťuje kolagen, a superoxiddismutázy. V kultivovaných lidských kožních fibroblastech byla syntéza kolagenu měřena napříč pikomolárními až nanomolárními koncentracemi spolu s počtem buněk, takže sledovaným parametrem byla produkce na buňku (PMID 3169264). Širší literatura o genové expresi pro tento peptid je shrnuta v PMID 29986520.\n\n**BPC-157** je ve své literatuře popisován jako fungující přes angiogenezi a signalizaci růstovými faktory, měřenou na hlodavčích modelech pojivové tkáně a žaludeční sliznice. Je neobvykle stabilní v žaludeční šťávě.\n\n**TB-500** váže G-aktin, monomer, ze kterého buňky sestavují aktinový cytoskelet. Vyvázání části tohoto poolu je molekulární mechanismus za parametry migrace a angiogeneze uváděnými v modelových systémech srdeční, kožní a rohovkové tkáně (PMID 36464872).\n\nJeden bod patří na stránku otevřeně: nebyla nalezena žádná studie testující tyto tři peptidy jako kombinaci u jakéhokoli druhu. Každý výsledek výše patří k samostatné studii jedné složky. Cokoli řečeného o společném působení těchto tří je odvození, ne data, což je také důvod, proč zveřejňujeme čísla obsahu pro každou složku zvlášť místo jednoho kombinovaného čísla čistoty.\n\nPro rekonstituci je standardním rozpouštědlem v publikovaných protokolech bakteriostatická nebo sterilní voda.\n\n<InlineRelated slug=\"bacteriostatic-water\" label=\"Standardní rozpouštědlo pro rekonstituci\" />\n\n<SectionDivider />\n\n## Dokumentace\n\n<QualitySpecs title=\"Specifikace materiálu\">\n  <Spec label=\"Složení\" value=\"GHK-Cu 50 mg + BPC-157 10 mg + TB-500 10 mg, směs výzkumné kvality (celkem 70 mg)\" />\n  <Spec label=\"Čistota\" value=\"≥98 % (ověřeno HPLC, každá složka)\" />\n  <Spec label=\"Testovací metoda\" value=\"HPLC + hmotnostní spektrometrie\" />\n  <Spec label=\"Forma\" value=\"Lyofilizovaný prášek\" />\n  <Spec label=\"Obvyklé skladování (v uzavřeném balení)\" value=\"-20 °C dlouhodobě, 2 až 8 °C krátkodobě, chráněno před světlem\" />\n  <Spec label=\"Obvyklé skladování (po rekonstituci)\" value=\"2 až 8 °C, obvyklá spotřeba do 30 dní\" />\n  <Spec label=\"CoA\" value=\"Specifické pro šarži, nezávislá laboratoř (Janoshik)\" />\n</QualitySpecs>\n\n<LabReport />\n\n<PubMedRefs title=\"Vybraný výzkum\">\n  <PubMedRef pmid=\"3169264\" title=\"Stimulation of collagen synthesis in fibroblast cultures by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+\">FEBS Lett, 1988; kultura lidských kožních fibroblastů</PubMedRef>\n  <PubMedRef pmid=\"29986520\" title=\"Regenerative and Protective Actions of the GHK-Cu Peptide in the Light of the New Gene Data\">Int J Mol Sci, 2018; přehled postavený na profilech genové exprese</PubMedRef>\n  <PubMedRef pmid=\"26236730\" title=\"GHK Peptide as a Natural Modulator of Multiple Cellular Pathways in Skin Regeneration\">Biomed Res Int, 2015; přehled dat o kolagenu a imunitních drahách</PubMedRef>\n  <PubMedRef pmid=\"40672369\" title=\"Exploring the beneficial effects of GHK-Cu on an experimental model of colitis and the underlying mechanisms\">Front Pharmacol, 2025; myší model, markery zánětlivé dráhy</PubMedRef>\n  <PubMedRef pmid=\"41754849\" title=\"Tendon, Ligament, and Muscle Injury, Osteotendinous, Myotendinous, and Muscle-to-Bone Junction Therapy Perspectives with Growth Factors and Stable Gastric Pentadecapeptide BPC 157-A Review\">Přehled hlodavčí modelové literatury</PubMedRef>\n  <PubMedRef pmid=\"40131143\" title=\"Safety of Intravenous Infusion of BPC157 in Humans: A Pilot Study\">2025; první pilotní studie bezpečnosti u lidí, malé n</PubMedRef>\n  <PubMedRef pmid=\"36464872\" title=\"Thymosin β4 and Actin: Binding Modes, Biological Functions and Clinical Applications\">2023; kanonický přehled mechanismu vazby na aktin</PubMedRef>\n</PubMedRefs>\n\n<Callout type=\"warning\" title=\"Pouze pro výzkumné účely\">\nTento materiál se prodává výhradně pro in vitro výzkum a laboratorní použití. Není určen k lidské ani zvířecí konzumaci, k medicínskému, kosmetickému ani domácímu použití. Vhodný pouze pro profesionální laboratorní prostředí.\n</Callout>","shortDescription":"GLOW je společně lyofilizovaná lahvička obsahující GHK-Cu, BPC-157 a TB-500 v pevném hmotnostním poměru 50:10:10, celkem 70 mg. Každý peptid má vlastní publikovanou literaturu; žádná studie netestovala tyto tři společně. Obsah jednotlivých složek je uveden na CoA šarže.","metaTitle":"Koupit směs GLOW (GHK-Cu, BPC-157, TB-500) | EU doručení","metaDescription":"GLOW: společně lyofilizovaný GHK-Cu 50 mg, BPC-157 10 mg, TB-500 10 mg. CoA Janoshik pro každou složku, doručení po EU. Pouze pro in vitro výzkum."},{"id":"d4fb5f00-e217-4df4-a76e-93a1db648117","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","locale":"de","name":"GLOW","description":"<ProductHighlights>\n  <Highlight icon=\"atom\" title=\"Drei Peptide, eine Ampulle\">\n    GHK-Cu, BPC-157 und TB-500, kogefriergetrocknet in einem festen Massenverhältnis von 50:10:10, 70 mg insgesamt. Die Mengen je Komponente stehen in der Materialspezifikation unten.\n  </Highlight>\n  <Highlight icon=\"dna\" title=\"GHK-Cu: Kollagensynthese in Kultur\">\n    Fibroblastenstudien maßen Kollagensynthese über picomolare bis nanomolare Konzentrationen hinweg, zusammen mit der Zellzahl (PMID 3169264).\n  </Highlight>\n  <Highlight icon=\"shield\" title=\"BPC-157: gastrales Pentadecapeptid\">\n    Eine 15 Reste umfassende Sequenz, abgeleitet von einem Protein im Magensaft, untersucht in Nagetiermodellen mit Angiogenese und Wachstumsfaktor-Signalgebung als vorgeschlagenem Mechanismus.\n  </Highlight>\n  <Highlight icon=\"heart\" title=\"TB-500: vollständiges Thymosin beta-4\">\n    Das komplette, 43 Aminosäuren umfassende Peptid, per CoA bestätigt, nicht das kurze Ac-LKKTETQ-Fragment, das andernorts unter demselben Namen verkauft wird. Es bindet G-Aktin, das Monomer des Aktin-Zytoskeletts.\n  </Highlight>\n  <Highlight icon=\"leaf\" title=\"CoA-Werte je Komponente\">\n    Der Chargenbericht gibt den gemessenen Gehalt für jedes der drei Peptide getrennt an, der einzig sinnvolle Weg, eine Mehrkomponenten-Ampulle zu zertifizieren.\n  </Highlight>\n  <Highlight icon=\"microscope\" title=\"Getrennt untersucht, nicht als Mischung\">\n    Es wurde keine Studie identifiziert, die diese Dreipeptid-Kombination in irgendeiner Spezies testet. Das Verhältnis ist eine Formulierungsentscheidung, kein Befund.\n  </Highlight>\n</ProductHighlights>\n\n<ResearchTags title=\"Forschungsbereiche\">\n  <Tag>Kupferkomplex</Tag>\n  <Tag>Kollagensynthese</Tag>\n  <Tag>Aktinbindung</Tag>\n  <Tag>Angiogenese</Tag>\n  <Tag>Zellmigration</Tag>\n  <Tag>Nagetiermodelle</Tag>\n</ResearchTags>\n\n## Was ist GLOW\n\nGLOW ist ein Dreipeptid-Forschungsblend in einer einzigen lyophilisierten Ampulle: GHK-Cu, BPC-157 und TB-500 in einem festen Massenverhältnis von 50:10:10, 70 mg insgesamt. Die drei werden gemeinsam gefriergetrocknet, dieses Verhältnis liegt also bei der Formulierung fest und kann nach der Rekonstitution nicht geändert werden.\n\nGHK-Cu ist der Kupfer(II)-Komplex des natürlichen humanen Tripeptids Glycyl-histidyl-lysin, hauptsächlich in Fibroblastenkultur und Ex-vivo-Haut untersucht. BPC-157 ist eine 15 Aminosäuren umfassende Sequenz, abgeleitet vom Magensaftprotein BPGP, in Nagetiermodellen untersucht. TB-500 ist vollständiges Thymosin beta-4, ein 43 Aminosäuren umfassendes aktinbindendes Protein, das in den meisten Zelltypen vorkommt; unser Material ist per CoA als die vollständige Sequenz bestätigt statt als das kurze Fragment, das ein Teil des Marktes unter demselben Namen verkauft.\n\nWir liefern GLOW als gefriergetrocknetes Pulver ausschließlich für die Laborforschung. In Lösung nimmt es eine schwache blaue bis blaugrüne Tönung an, die vom Kupferion in GHK-Cu stammt und von nichts anderem.\n\n## Wirkweise\n\nHier gibt es drei getrennte Mechanismen, einen pro Komponente, und sie stammen aus drei getrennten Literaturen.\n\n**GHK-Cu** bindet Kupfer und präsentiert es den Zellen. Kupfer ist der Cofaktor von Lysyloxidase, die Kollagen vernetzt, und von Superoxiddismutase. In kultivierten humanen Hautfibroblasten wurde die Kollagensynthese über picomolare bis nanomolare Konzentrationen hinweg gemessen, zusammen mit der Zellzahl, sodass die Messgröße der Output pro Zelle war (PMID 3169264). Die weitere Genexpressions-Literatur zu diesem Peptid ist in PMID 29986520 zusammengefasst.\n\n**BPC-157** wird in seiner Literatur als über Angiogenese und Wachstumsfaktor-Signalgebung wirkend beschrieben, gemessen in Nagetiermodellen des Bindegewebes und der Magenschleimhaut. Es ist ungewöhnlich stabil im Magensaft.\n\n**TB-500** bindet G-Aktin, das Monomer, aus dem Zellen das Aktin-Zytoskelett aufbauen. Die Sequestrierung eines Teils dieses Pools ist der molekulare Mechanismus hinter den Migrations- und Angiogenese-Endpunkten, die in kardialen, dermalen und kornealen Modellsystemen berichtet werden (PMID 36464872).\n\nEin Punkt gehört klar auf die Seite: Es wurde keine Studie identifiziert, die diese drei Peptide als Kombination in irgendeiner Spezies testet. Jedes Ergebnis oben gehört zu einer Einzelkomponenten-Studie. Alles, was über ein gemeinsames Wirken der drei gesagt wird, ist Schlussfolgerung statt Daten, weshalb wir auch Gehaltszahlen je Komponente veröffentlichen statt eines einzelnen kombinierten Reinheitswerts.\n\nFür die Rekonstitution ist bakteriostatisches oder steriles Wasser das in publizierten Protokollen übliche Lösungsmittel.\n\n<InlineRelated slug=\"bacteriostatic-water\" label=\"Standard-Lösungsmittel für die Rekonstitution\" />\n\n<SectionDivider />\n\n## Dokumentation\n\n<QualitySpecs title=\"Materialspezifikation\">\n  <Spec label=\"Zusammensetzung\" value=\"GHK-Cu 50mg + BPC-157 10mg + TB-500 10mg, Blend in Forschungsqualität (70mg gesamt)\" />\n  <Spec label=\"Reinheit\" value=\"≥98% (HPLC-geprüft, je Komponente)\" />\n  <Spec label=\"Prüfmethode\" value=\"HPLC + Massenspektrometrie\" />\n  <Spec label=\"Form\" value=\"Lyophilisiertes Pulver\" />\n  <Spec label=\"Übliche Lagerung (versiegelt)\" value=\"-20 °C langfristig, 2 bis 8 °C kurzfristig, lichtgeschützt\" />\n  <Spec label=\"Übliche Lagerung (rekonstituiert)\" value=\"2 bis 8 °C, üblicherweise innerhalb von 30 Tagen verwendet\" />\n  <Spec label=\"CoA\" value=\"Chargenspezifisch, unabhängiges Labor (Janoshik)\" />\n</QualitySpecs>\n\n<LabReport />\n\n<PubMedRefs title=\"Ausgewählte Forschung\">\n  <PubMedRef pmid=\"3169264\" title=\"Stimulation of collagen synthesis in fibroblast cultures by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+\">FEBS Lett, 1988; humane Hautfibroblastenkultur</PubMedRef>\n  <PubMedRef pmid=\"29986520\" title=\"Regenerative and Protective Actions of the GHK-Cu Peptide in the Light of the New Gene Data\">Int J Mol Sci, 2018; Review auf Basis von Genexpressionsprofilen</PubMedRef>\n  <PubMedRef pmid=\"26236730\" title=\"GHK Peptide as a Natural Modulator of Multiple Cellular Pathways in Skin Regeneration\">Biomed Res Int, 2015; Review zu Kollagen- und Immunweg-Daten</PubMedRef>\n  <PubMedRef pmid=\"40672369\" title=\"Exploring the beneficial effects of GHK-Cu on an experimental model of colitis and the underlying mechanisms\">Front Pharmacol, 2025; Mausmodell, Entzündungssignalweg-Marker</PubMedRef>\n  <PubMedRef pmid=\"41754849\" title=\"Tendon, Ligament, and Muscle Injury, Osteotendinous, Myotendinous, and Muscle-to-Bone Junction Therapy Perspectives with Growth Factors and Stable Gastric Pentadecapeptide BPC 157-A Review\">Review der Nagetiermodell-Literatur</PubMedRef>\n  <PubMedRef pmid=\"40131143\" title=\"Safety of Intravenous Infusion of BPC157 in Humans: A Pilot Study\">2025; erste humane Sicherheits-Pilotstudie, kleines n</PubMedRef>\n  <PubMedRef pmid=\"36464872\" title=\"Thymosin β4 and Actin: Binding Modes, Biological Functions and Clinical Applications\">2023; kanonischer Review zum Aktinbindungs-Mechanismus</PubMedRef>\n</PubMedRefs>\n\n<Callout type=\"warning\" title=\"Nur für Forschungszwecke\">\nDieses Material wird ausschließlich für In-vitro-Forschung und Laborgebrauch verkauft. Nicht bestimmt für den menschlichen oder tierischen Verzehr, medizinische, kosmetische oder Haushaltsanwendungen. Geeignet nur für professionelle Laborumgebungen.\n</Callout>","shortDescription":"GLOW ist eine kogefriergetrocknete Ampulle mit GHK-Cu, BPC-157 und TB-500 in einem festen Massenverhältnis von 50:10:10, 70 mg insgesamt. Jedes Peptid hat seine eigene publizierte Literatur; keine Studie hat alle drei gemeinsam getestet. Gehalt je Komponente auf dem Chargen-CoA.","metaTitle":"GLOW-Blend (GHK-Cu, BPC-157, TB-500) kaufen | EU-Versand","metaDescription":"GLOW: kogefriergetrocknet GHK-Cu 50 mg, BPC-157 10 mg, TB-500 10 mg. Janoshik-CoA je Komponente, EU-Versand. Nur In-vitro-Forschung."},{"id":"e1e11515-de35-488f-9a1b-803919aa9681","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","locale":"fr","name":"GLOW","description":"<ProductHighlights>\n  <Highlight icon=\"atom\" title=\"Trois peptides, un flacon\">\n    GHK-Cu, BPC-157 et TB-500, co-lyophilisés selon un ratio massique fixe de 50:10:10, 70 mg au total. Les quantités par composant figurent dans la spécification du matériau ci-dessous.\n  </Highlight>\n  <Highlight icon=\"dna\" title=\"GHK-Cu : synthèse de collagène en culture\">\n    Des études sur fibroblastes ont mesuré la synthèse de collagène sur une gamme de concentrations picomolaires à nanomolaires, ainsi que le nombre de cellules (PMID 3169264).\n  </Highlight>\n  <Highlight icon=\"shield\" title=\"BPC-157 : pentadécapeptide gastrique\">\n    Une séquence de 15 résidus dérivée d'une protéine du suc gastrique, étudiée dans des modèles rongeurs avec l'angiogenèse et la signalisation des facteurs de croissance comme mécanisme proposé.\n  </Highlight>\n  <Highlight icon=\"heart\" title=\"TB-500 : thymosine bêta-4 de pleine longueur\">\n    Le peptide complet de 43 acides aminés, confirmé par CoA, et non le fragment court Ac-LKKTETQ vendu ailleurs sous le même nom. Il lie la G-actine, le monomère du cytosquelette d'actine.\n  </Highlight>\n  <Highlight icon=\"leaf\" title=\"Chiffres de CoA par composant\">\n    Le rapport de lot indique la teneur mesurée pour chacun des trois peptides séparément, ce qui est la seule façon pertinente de certifier un flacon à plusieurs composants.\n  </Highlight>\n  <Highlight icon=\"microscope\" title=\"Étudiés séparément, pas comme mélange\">\n    Aucune étude testant cette combinaison de trois peptides, quelle que soit l'espèce, n'a été identifiée. Le ratio est un choix de formulation, pas un résultat.\n  </Highlight>\n</ProductHighlights>\n\n<ResearchTags title=\"Domaines de recherche\">\n  <Tag>Complexe de cuivre</Tag>\n  <Tag>Synthèse de collagène</Tag>\n  <Tag>Liaison à l'actine</Tag>\n  <Tag>Angiogenèse</Tag>\n  <Tag>Migration cellulaire</Tag>\n  <Tag>Modèles rongeurs</Tag>\n</ResearchTags>\n\n## Qu'est-ce que le GLOW\n\nGLOW est un mélange de recherche à trois peptides dans un seul flacon lyophilisé : GHK-Cu, BPC-157 et TB-500 selon un ratio massique fixe de 50:10:10, 70 mg au total. Les trois sont lyophilisés ensemble, si bien que ce ratio est fixé lors de la formulation et ne peut pas être modifié après reconstitution.\n\nLe GHK-Cu est le complexe de cuivre(II) du tripeptide humain naturel glycyl-histidyl-lysine, étudié principalement en culture de fibroblastes et sur peau ex vivo. Le BPC-157 est une séquence de 15 acides aminés dérivée de la protéine BPGP du suc gastrique, étudiée dans des modèles rongeurs. Le TB-500 est la thymosine bêta-4 de pleine longueur, une protéine liant l'actine de 43 acides aminés présente dans la plupart des types cellulaires ; notre matériel est confirmé par CoA comme la séquence complète plutôt que le fragment court que certains vendent sous le même nom.\n\nNous fournissons le GLOW sous forme de poudre lyophilisée, pour la recherche de laboratoire uniquement. En solution, il prend une légère teinte bleue à bleu-vert, qui provient de l'ion cuivre du GHK-Cu et de rien d'autre.\n\n## Comment cela fonctionne\n\nIl y a ici trois mécanismes distincts, un par composant, et ils proviennent de trois littératures distinctes.\n\n**Le GHK-Cu** lie le cuivre et le présente aux cellules. Le cuivre est le cofacteur de la lysyl oxydase, qui réticule le collagène, et de la superoxyde dismutase. Dans des fibroblastes cutanés humains en culture, la synthèse de collagène a été mesurée sur une gamme de concentrations picomolaires à nanomolaires, ainsi que le nombre de cellules, si bien que le critère était la production par cellule (PMID 3169264). La littérature plus large d'expression génique sur ce peptide est passée en revue dans le PMID 29986520.\n\n**Le BPC-157** est décrit dans sa littérature comme agissant via l'angiogenèse et la signalisation des facteurs de croissance, mesurées dans des modèles rongeurs de tissu conjonctif et de muqueuse gastrique. Il est inhabituellement stable dans le suc gastrique.\n\n**Le TB-500** lie la G-actine, le monomère à partir duquel les cellules assemblent le cytosquelette d'actine. Séquestrer une partie de cette réserve est le mécanisme moléculaire derrière les critères de migration et d'angiogenèse rapportés dans des systèmes modèles cardiaques, dermiques et cornéens (PMID 36464872).\n\nUn point mérite d'être dit clairement sur cette page : aucune étude testant ces trois peptides en combinaison, quelle que soit l'espèce, n'a été identifiée. Chaque résultat ci-dessus appartient à une étude à composant unique. Toute affirmation sur une action conjointe des trois relève de la déduction et non de données, ce qui explique aussi pourquoi nous publions des chiffres de teneur par composant plutôt qu'un seul chiffre de pureté combiné.\n\nPour la reconstitution, le solvant standard des protocoles publiés est l'eau bactériostatique ou l'eau stérile.\n\n<InlineRelated slug=\"bacteriostatic-water\" label=\"Solvant standard pour la reconstitution\" />\n\n<SectionDivider />\n\n## Documentation\n\n<QualitySpecs title=\"Spécification du matériau\">\n  <Spec label=\"Composition\" value=\"GHK-Cu 50mg + BPC-157 10mg + TB-500 10mg, mélange qualité recherche (70mg au total)\" />\n  <Spec label=\"Pureté\" value=\"≥98% (vérifié par HPLC, chaque composant)\" />\n  <Spec label=\"Méthode d'analyse\" value=\"HPLC + spectrométrie de masse\" />\n  <Spec label=\"Forme\" value=\"Poudre lyophilisée\" />\n  <Spec label=\"Stockage habituel (scellé)\" value=\"-20 °C long terme, 2 à 8 °C court terme, à l'abri de la lumière\" />\n  <Spec label=\"Stockage habituel (reconstitué)\" value=\"2 à 8 °C, généralement utilisé dans les 30 jours\" />\n  <Spec label=\"CoA\" value=\"Spécifique au lot, tiers (Janoshik)\" />\n</QualitySpecs>\n\n<LabReport />\n\n<PubMedRefs title=\"Recherche sélectionnée\">\n  <PubMedRef pmid=\"3169264\" title=\"Stimulation of collagen synthesis in fibroblast cultures by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+\">FEBS Lett, 1988 ; culture de fibroblastes cutanés humains</PubMedRef>\n  <PubMedRef pmid=\"29986520\" title=\"Regenerative and Protective Actions of the GHK-Cu Peptide in the Light of the New Gene Data\">Int J Mol Sci, 2018 ; revue basée sur des profils d'expression génique</PubMedRef>\n  <PubMedRef pmid=\"26236730\" title=\"GHK Peptide as a Natural Modulator of Multiple Cellular Pathways in Skin Regeneration\">Biomed Res Int, 2015 ; revue des données sur le collagène et les voies immunitaires</PubMedRef>\n  <PubMedRef pmid=\"40672369\" title=\"Exploring the beneficial effects of GHK-Cu on an experimental model of colitis and the underlying mechanisms\">Front Pharmacol, 2025 ; modèle murin, marqueurs des voies inflammatoires</PubMedRef>\n  <PubMedRef pmid=\"41754849\" title=\"Tendon, Ligament, and Muscle Injury, Osteotendinous, Myotendinous, and Muscle-to-Bone Junction Therapy Perspectives with Growth Factors and Stable Gastric Pentadecapeptide BPC 157-A Review\">Revue de la littérature en modèle rongeur</PubMedRef>\n  <PubMedRef pmid=\"40131143\" title=\"Safety of Intravenous Infusion of BPC157 in Humans: A Pilot Study\">2025 ; premier essai pilote de sécurité chez l'humain, petit effectif</PubMedRef>\n  <PubMedRef pmid=\"36464872\" title=\"Thymosin β4 and Actin: Binding Modes, Biological Functions and Clinical Applications\">2023 ; revue de référence du mécanisme de liaison à l'actine</PubMedRef>\n</PubMedRefs>\n\n<Callout type=\"warning\" title=\"Réservé à un usage de recherche\">\nCe matériau est vendu strictement pour la recherche in vitro et l'usage en laboratoire. Non destiné à la consommation humaine ou animale, ni à des applications médicales, cosmétiques ou domestiques. Convient uniquement aux environnements de laboratoire professionnels.\n</Callout>","shortDescription":"Le GLOW est un flacon co-lyophilisé contenant du GHK-Cu, du BPC-157 et du TB-500 selon un ratio massique fixe de 50:10:10, 70 mg au total. Chaque peptide a sa propre littérature publiée ; aucune étude n'a testé les trois ensemble. Teneur par composant sur le CoA du lot.","metaTitle":"Acheter GLOW (GHK-Cu, BPC-157, TB-500) | UE","metaDescription":"GLOW : GHK-Cu 50 mg, BPC-157 10 mg, TB-500 10 mg co-lyophilisés. CoA Janoshik par composant, expédition UE. Usage recherche in vitro uniquement."},{"id":"c5bc3103-f0ed-4ef7-836b-6f20a85edd2e","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","locale":"da","name":"GLOW","description":"<ProductHighlights>\n  <Highlight icon=\"atom\" title=\"Tre peptider, ét hætteglas\">\n    GHK-Cu, BPC-157 og TB-500, kolyofiliseret i et fast masseforhold på 50:10:10, 70 mg i alt. Mængder pr. komponent findes i materialespecifikationen nedenfor.\n  </Highlight>\n  <Highlight icon=\"dna\" title=\"GHK-Cu: kollagensyntese i kultur\">\n    Fibroblaststudier målte kollagensyntese på tværs af picomolære til nanomolære koncentrationer, sammen med celletal (PMID 3169264).\n  </Highlight>\n  <Highlight icon=\"shield\" title=\"BPC-157: gastrisk pentadecapeptid\">\n    En 15-residuers sekvens afledt af et protein i mavesaft, undersøgt i gnavermodeller med angiogenese og vækstfaktorsignalering som den foreslåede mekanisme.\n  </Highlight>\n  <Highlight icon=\"heart\" title=\"TB-500: fuldlængde thymosin beta-4\">\n    Det komplette 43-aminosyre-peptid, CoA-bekræftet, ikke det korte Ac-LKKTETQ-fragment solgt andre steder under samme navn. Det binder G-actin, monomeren i actin-cytoskelettet.\n  </Highlight>\n  <Highlight icon=\"leaf\" title=\"CoA-tal pr. komponent\">\n    Batchrapporten angiver målt indhold for hvert af de tre peptider separat, hvilket er den eneste meningsfulde måde at certificere et hætteglas med flere komponenter på.\n  </Highlight>\n  <Highlight icon=\"microscope\" title=\"Undersøgt separat, ikke som en blanding\">\n    Intet studie, der tester denne tre-peptid-kombination i nogen art, blev identificeret. Forholdet er et formuleringsvalg, ikke et fund.\n  </Highlight>\n</ProductHighlights>\n\n<ResearchTags title=\"Forskningsområder\">\n  <Tag>Kobberkompleks</Tag>\n  <Tag>Kollagensyntese</Tag>\n  <Tag>Actin-binding</Tag>\n  <Tag>Angiogenese</Tag>\n  <Tag>Cellemigration</Tag>\n  <Tag>Gnavermodeller</Tag>\n</ResearchTags>\n\n## Hvad er GLOW\n\nGLOW er en forskningsblanding af tre peptider i ét lyofiliseret hætteglas: GHK-Cu, BPC-157 og TB-500 i et fast masseforhold på 50:10:10, 70 mg i alt. De tre frysetørres sammen, så det forhold er fastsat ved formuleringen og kan ikke ændres efter rekonstitution.\n\nGHK-Cu er kobber(II)-komplekset af det naturlige humane tripeptid glycyl-histidyl-lysin, primært undersøgt i fibroblastkultur og i ex vivo-hud. BPC-157 er en 15-aminosyre-sekvens afledt af mavesaftproteinet BPGP, undersøgt i gnavermodeller. TB-500 er fuldlængde thymosin beta-4, et 43-aminosyre actin-bindende protein til stede i de fleste celletyper; vores materiale er CoA-bekræftet som den komplette sekvens frem for det korte fragment, en del af markedet sælger under samme navn.\n\nVi leverer GLOW som et frysetørret pulver udelukkende til laboratorieforskning. I opløsning antager det en svag blå til blågrøn nuance, som stammer fra kobberionen i GHK-Cu og intet andet.\n\n## Sådan virker det\n\nDer er tre separate mekanismer her, én pr. komponent, og de stammer fra tre separate litteraturer.\n\n**GHK-Cu** binder kobber og præsenterer det for celler. Kobber er cofaktoren for lysyloxidase, der krydsbinder kollagen, og for superoxiddismutase. I dyrkede humane hudfibroblaster blev kollagensyntese målt på tværs af picomolære til nanomolære koncentrationer sammen med celletal, så udfaldet var produktion pr. celle (PMID 3169264). Den bredere genekspressionslitteratur om dette peptid er gennemgået i PMID 29986520.\n\n**BPC-157** beskrives i sin litteratur som virkende gennem angiogenese og vækstfaktorsignalering, målt i gnavermodeller af bindevæv og af mavesækkens slimhinde. Det er usædvanligt stabilt i mavesaft.\n\n**TB-500** binder G-actin, monomeren cellerne bruger til at opbygge actin-cytoskelettet. At binde en del af den pulje er den molekylære mekanisme bag migrations- og angiogeneseendepunkterne rapporteret i kardielle, dermale og korneale modelsystemer (PMID 36464872).\n\nÉt punkt hører til på siden ligeud: intet studie, der tester disse tre peptider som en kombination, i nogen art, blev identificeret. Hvert resultat ovenfor hører til et enkelt-komponentstudie. Alt, hvad der siges om, at de tre virker sammen, er en slutning frem for data, hvilket er grunden til, at vi publicerer indholdstal pr. komponent i stedet for ét blandet renhedstal.\n\nTil rekonstitution er standardopløsningsmidlet i publicerede protokoller bakteriostatisk eller sterilt vand.\n\n<InlineRelated slug=\"bacteriostatic-water\" label=\"Standardopløsningsmiddel til rekonstitution\" />\n\n<SectionDivider />\n\n## Dokumentation\n\n<QualitySpecs title=\"Materialespecifikation\">\n  <Spec label=\"Sammensætning\" value=\"GHK-Cu 50mg + BPC-157 10mg + TB-500 10mg, blanding i forskningskvalitet (70mg i alt)\" />\n  <Spec label=\"Renhed\" value=\"≥98% (HPLC-verificeret, hver komponent)\" />\n  <Spec label=\"Testmetode\" value=\"HPLC + massespektrometri\" />\n  <Spec label=\"Form\" value=\"Lyofiliseret pulver\" />\n  <Spec label=\"Typisk opbevaring (forseglet)\" value=\"-20 °C ved langtidsopbevaring, 2 til 8 °C ved korttidsopbevaring, lysbeskyttet\" />\n  <Spec label=\"Typisk opbevaring (rekonstitueret)\" value=\"2 til 8 °C, anvendes typisk inden for 30 dage\" />\n  <Spec label=\"CoA\" value=\"Batchspecifik, uafhængigt laboratorium (Janoshik)\" />\n</QualitySpecs>\n\n<LabReport />\n\n<PubMedRefs title=\"Udvalgt forskning\">\n  <PubMedRef pmid=\"3169264\" title=\"Stimulation of collagen synthesis in fibroblast cultures by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+\">FEBS Lett, 1988; human hudfibroblastkultur</PubMedRef>\n  <PubMedRef pmid=\"29986520\" title=\"Regenerative and Protective Actions of the GHK-Cu Peptide in the Light of the New Gene Data\">Int J Mol Sci, 2018; oversigt bygget på genekspressionsprofiler</PubMedRef>\n  <PubMedRef pmid=\"26236730\" title=\"GHK Peptide as a Natural Modulator of Multiple Cellular Pathways in Skin Regeneration\">Biomed Res Int, 2015; oversigt over kollagen- og immunsignalvejsdata</PubMedRef>\n  <PubMedRef pmid=\"40672369\" title=\"Exploring the beneficial effects of GHK-Cu on an experimental model of colitis and the underlying mechanisms\">Front Pharmacol, 2025; musemodel, inflammatoriske signalvejsmarkører</PubMedRef>\n  <PubMedRef pmid=\"41754849\" title=\"Tendon, Ligament, and Muscle Injury, Osteotendinous, Myotendinous, and Muscle-to-Bone Junction Therapy Perspectives with Growth Factors and Stable Gastric Pentadecapeptide BPC 157-A Review\">Oversigt over gnavermodel-litteraturen</PubMedRef>\n  <PubMedRef pmid=\"40131143\" title=\"Safety of Intravenous Infusion of BPC157 in Humans: A Pilot Study\">2025; første humane sikkerhedspilotstudie, lille n</PubMedRef>\n  <PubMedRef pmid=\"36464872\" title=\"Thymosin β4 and Actin: Binding Modes, Biological Functions and Clinical Applications\">2023; kanonisk oversigt over actin-bindingsmekanismen</PubMedRef>\n</PubMedRefs>\n\n<Callout type=\"warning\" title=\"Kun til forskningsbrug\">\nDette materiale sælges udelukkende til in vitro-forskning og laboratoriebrug. Ikke beregnet til human eller animalsk indtagelse, medicinsk, kosmetisk eller husholdningsmæssig anvendelse. Kun egnet til professionelle laboratoriemiljøer.\n</Callout>","shortDescription":"GLOW er et kolyofiliseret hætteglas med GHK-Cu, BPC-157 og TB-500 i et fast masseforhold på 50:10:10, 70 mg i alt. Hvert peptid har sin egen publicerede litteratur; intet studie har testet de tre sammen. Indhold pr. komponent på batch-CoA'en.","metaTitle":"Køb GLOW-blanding (GHK-Cu, BPC-157, TB-500) | EU-forsendelse","metaDescription":"GLOW: kolyofiliseret GHK-Cu 50 mg, BPC-157 10 mg, TB-500 10 mg. Janoshik-CoA pr. komponent, EU-forsendelse. Kun til in vitro-forskning."},{"id":"c60dc218-5815-4475-b441-f1ec40833d0d","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","locale":"pt","name":"GLOW","description":"<ProductHighlights>\n  <Highlight icon=\"atom\" title=\"Três péptidos, um só frasco\">\n    GHK-Cu, BPC-157 e TB-500, co-liofilizados numa proporção mássica fixa de 50:10:10, 70 mg no total. As quantidades por componente constam da especificação do material abaixo.\n  </Highlight>\n  <Highlight icon=\"dna\" title=\"GHK-Cu: síntese de colagénio em cultura\">\n    Estudos em fibroblastos mediram a síntese de colagénio em concentrações picomolares a nanomolares, a par do número de células (PMID 3169264).\n  </Highlight>\n  <Highlight icon=\"shield\" title=\"BPC-157: pentadecapéptido gástrico\">\n    Uma sequência de 15 resíduos derivada de uma proteína do suco gástrico, estudada em modelos de roedores, com a angiogénese e a sinalização de fatores de crescimento como mecanismo proposto.\n  </Highlight>\n  <Highlight icon=\"heart\" title=\"TB-500: timosina beta-4 de comprimento total\">\n    O péptido completo de 43 aminoácidos, confirmado por CoA, e não o fragmento curto Ac-LKKTETQ vendido noutros locais sob o mesmo nome. Liga-se à G-actina, o monómero do citoesqueleto de actina.\n  </Highlight>\n  <Highlight icon=\"leaf\" title=\"Valores de CoA por componente\">\n    O relatório do lote indica o conteúdo medido para cada um dos três péptidos separadamente, sendo essa a única forma significativa de certificar um frasco multicomponente.\n  </Highlight>\n  <Highlight icon=\"microscope\" title=\"Estudados separadamente, não como mistura\">\n    Não foi identificado nenhum estudo que testasse esta combinação de três péptidos em nenhuma espécie. A proporção é uma escolha de formulação, não uma conclusão.\n  </Highlight>\n</ProductHighlights>\n\n<ResearchTags title=\"Áreas de investigação\">\n  <Tag>Complexo de cobre</Tag>\n  <Tag>Síntese de colagénio</Tag>\n  <Tag>Ligação à actina</Tag>\n  <Tag>Angiogénese</Tag>\n  <Tag>Migração celular</Tag>\n  <Tag>Modelos de roedores</Tag>\n</ResearchTags>\n\n## O que é o GLOW\n\nO GLOW é uma mistura de investigação de três péptidos, num único frasco liofilizado: GHK-Cu, BPC-157 e TB-500, numa proporção mássica fixa de 50:10:10, 70 mg no total. Os três são liofilizados em conjunto, pelo que essa proporção é fixada na formulação e não pode ser alterada após a reconstituição.\n\nO GHK-Cu é o complexo de cobre(II) do tripéptido humano natural glicil-histidil-lisina, estudado principalmente em cultura de fibroblastos e em pele ex vivo. O BPC-157 é uma sequência de 15 aminoácidos derivada da proteína BPGP do suco gástrico, estudada em modelos de roedores. O TB-500 é a timosina beta-4 de comprimento total, uma proteína ligante da actina de 43 aminoácidos, presente na maioria dos tipos de células; o nosso material está confirmado por CoA como a sequência completa, e não o fragmento curto que parte do mercado vende sob o mesmo nome.\n\nFornecemos o GLOW como pó seco por congelação, exclusivamente para investigação laboratorial. Em solução, adquire uma leve tonalidade azul a azul-esverdeada, proveniente do ião de cobre do GHK-Cu, e de nada mais.\n\n## Como funciona\n\nExistem aqui três mecanismos separados, um por componente, provenientes de três literaturas separadas.\n\n**O GHK-Cu** liga-se ao cobre e apresenta-o às células. O cobre é o cofator da lisil oxidase, que forma ligações cruzadas no colagénio, e da superóxido dismutase. Em fibroblastos cutâneos humanos em cultura, a síntese de colagénio foi medida em concentrações picomolares a nanomolares, a par do número de células, pelo que o parâmetro foi a produção por célula (PMID 3169264). A literatura mais alargada sobre expressão génica deste péptido é revista em PMID 29986520.\n\n**O BPC-157** é descrito na sua literatura como atuando através da angiogénese e da sinalização de fatores de crescimento, medidas em modelos de roedores de tecido conjuntivo e da mucosa gástrica. É invulgarmente estável no suco gástrico.\n\n**O TB-500** liga-se à G-actina, o monómero a partir do qual as células montam o citoesqueleto de actina. Sequestrar parte dessa reserva é o mecanismo molecular por trás dos parâmetros de migração e angiogénese relatados em sistemas-modelo cardíacos, dérmicos e corneanos (PMID 36464872).\n\nUm ponto pertence claramente ao corpo do texto: não foi identificado nenhum estudo que testasse estes três péptidos como combinação, em nenhuma espécie. Cada resultado acima pertence a um estudo de um único componente. Qualquer afirmação sobre os três a atuarem em conjunto é inferência, e não dados, sendo essa também a razão pela qual publicamos valores de conteúdo por componente, em vez de um único valor de pureza combinado.\n\nPara a reconstituição, o solvente padrão nos protocolos publicados é água bacteriostática ou estéril.\n\n<InlineRelated slug=\"bacteriostatic-water\" label=\"Solvente padrão para reconstituição\" />\n\n<SectionDivider />\n\n## Documentação\n\n<QualitySpecs title=\"Especificação do material\">\n  <Spec label=\"Composição\" value=\"GHK-Cu 50mg + BPC-157 10mg + TB-500 10mg, mistura de qualidade de investigação (70mg no total)\" />\n  <Spec label=\"Pureza\" value=\"≥98% (verificado por HPLC, cada componente)\" />\n  <Spec label=\"Método de teste\" value=\"HPLC + espectrometria de massa\" />\n  <Spec label=\"Forma\" value=\"Pó liofilizado\" />\n  <Spec label=\"Armazenamento típico (lacrado)\" value=\"-20 °C a longo prazo, 2 a 8 °C a curto prazo, protegido da luz\" />\n  <Spec label=\"Armazenamento típico (reconstituído)\" value=\"2 a 8 °C, utilizado normalmente no prazo de 30 dias\" />\n  <Spec label=\"CoA\" value=\"Específico do lote, laboratório independente (Janoshik)\" />\n</QualitySpecs>\n\n<LabReport />\n\n<PubMedRefs title=\"Investigação selecionada\">\n  <PubMedRef pmid=\"3169264\" title=\"Stimulation of collagen synthesis in fibroblast cultures by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+\">FEBS Lett, 1988; cultura de fibroblastos cutâneos humanos</PubMedRef>\n  <PubMedRef pmid=\"29986520\" title=\"Regenerative and Protective Actions of the GHK-Cu Peptide in the Light of the New Gene Data\">Int J Mol Sci, 2018; revisão assente em perfis de expressão génica</PubMedRef>\n  <PubMedRef pmid=\"26236730\" title=\"GHK Peptide as a Natural Modulator of Multiple Cellular Pathways in Skin Regeneration\">Biomed Res Int, 2015; revisão de dados sobre colagénio e vias imunitárias</PubMedRef>\n  <PubMedRef pmid=\"40672369\" title=\"Exploring the beneficial effects of GHK-Cu on an experimental model of colitis and the underlying mechanisms\">Front Pharmacol, 2025; modelo em ratinhos, marcadores de vias inflamatórias</PubMedRef>\n  <PubMedRef pmid=\"41754849\" title=\"Tendon, Ligament, and Muscle Injury, Osteotendinous, Myotendinous, and Muscle-to-Bone Junction Therapy Perspectives with Growth Factors and Stable Gastric Pentadecapeptide BPC 157-A Review\">Revisão da literatura de modelos em roedores</PubMedRef>\n  <PubMedRef pmid=\"40131143\" title=\"Safety of Intravenous Infusion of BPC157 in Humans: A Pilot Study\">2025; primeiro estudo piloto de segurança em humanos, n pequeno</PubMedRef>\n  <PubMedRef pmid=\"36464872\" title=\"Thymosin β4 and Actin: Binding Modes, Biological Functions and Clinical Applications\">2023; revisão canónica do mecanismo de ligação à actina</PubMedRef>\n</PubMedRefs>\n\n<Callout type=\"warning\" title=\"Apenas para uso em investigação\">\nEste material é vendido exclusivamente para investigação in vitro e uso laboratorial. Não se destina a consumo humano ou animal, nem a aplicações médicas, cosméticas ou domésticas. Adequado apenas para ambientes laboratoriais profissionais.\n</Callout>","shortDescription":"O GLOW é um frasco co-liofilizado que contém GHK-Cu, BPC-157 e TB-500 numa proporção mássica fixa de 50:10:10, 70 mg no total. Cada péptido tem a sua própria literatura publicada; nenhum estudo testou os três em conjunto. Conteúdo por componente no CoA do lote.","metaTitle":"Comprar Mistura GLOW (GHK-Cu, BPC-157, TB-500) | Envio UE","metaDescription":"GLOW: GHK-Cu 50 mg, BPC-157 10 mg, TB-500 10 mg, co-liofilizados. CoA Janoshik por componente, envio UE. Apenas investigação in vitro."},{"id":"bb4b48f6-d9ce-48a8-99fe-b081d652c262","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","locale":"ru","name":"GLOW","description":"<ProductHighlights>\n  <Highlight icon=\"atom\" title=\"Три пептида в одном флаконе\">\n    GHK-Cu, BPC-157 и TB-500, совместно лиофилизированные в фиксированном массовом соотношении 50:10:10, 70 мг в сумме. Содержание по каждому компоненту указано в спецификации материала ниже.\n  </Highlight>\n  <Highlight icon=\"dna\" title=\"GHK-Cu: синтез коллагена в культуре\">\n    Исследования на фибробластах измеряли синтез коллагена в диапазоне пикомолярных - наномолярных концентраций, наряду с числом клеток (PMID 3169264).\n  </Highlight>\n  <Highlight icon=\"shield\" title=\"BPC-157: желудочный пентадекапептид\">\n    Последовательность из 15 остатков, происходящая из белка желудочного сока, изучаемая на моделях грызунов, с предполагаемым механизмом ангиогенеза и сигнализации факторов роста.\n  </Highlight>\n  <Highlight icon=\"heart\" title=\"TB-500: полноразмерный тимозин бета-4\">\n    Полная последовательность из 43 аминокислот, подтверждённая по CoA, а не короткий фрагмент Ac-LKKTETQ, продаваемый в других местах под тем же названием. Связывает G-актин, мономер актинового цитоскелета.\n  </Highlight>\n  <Highlight icon=\"leaf\" title=\"Показатели CoA по каждому компоненту\">\n    В отчёте о партии указано измеренное содержание для каждого из трёх пептидов отдельно - единственный содержательный способ сертифицировать многокомпонентный флакон.\n  </Highlight>\n  <Highlight icon=\"microscope\" title=\"Изучены раздельно, не как смесь\">\n    Исследования, тестирующего эту трёхкомпонентную комбинацию у какого-либо вида, не найдено. Соотношение - выбор состава, а не результат исследования.\n  </Highlight>\n</ProductHighlights>\n\n<ResearchTags title=\"Области исследований\">\n  <Tag>Комплекс меди</Tag>\n  <Tag>Синтез коллагена</Tag>\n  <Tag>Связывание актина</Tag>\n  <Tag>Ангиогенез</Tag>\n  <Tag>Миграция клеток</Tag>\n  <Tag>Модели на грызунах</Tag>\n</ResearchTags>\n\n## Что такое GLOW\n\nGLOW - исследовательская смесь из трёх пептидов в едином лиофилизированном флаконе: GHK-Cu, BPC-157 и TB-500 в фиксированном массовом соотношении 50:10:10, 70 мг в сумме. Все три лиофилизируются вместе, поэтому это соотношение фиксировано на этапе составления и не может быть изменено после восстановления.\n\nGHK-Cu - комплекс меди(II) с природным трипептидом человека глицил-гистидил-лизин, изучаемый преимущественно в культуре фибробластов и на изолированной коже ex vivo. BPC-157 - последовательность из 15 аминокислот, происходящая из белка желудочного сока BPGP, изучаемая на моделях грызунов. TB-500 - полноразмерный тимозин бета-4, актин-связывающий белок из 43 аминокислот, присутствующий в большинстве типов клеток; наш материал подтверждён по CoA как полная последовательность, а не короткий фрагмент, который часть рынка продаёт под тем же названием.\n\nМы поставляем GLOW в виде высушенного вымораживанием порошка исключительно для лабораторных исследований. В растворе он приобретает слабый синий или сине-зелёный оттенок, который происходит от иона меди в GHK-Cu и ни от чего другого.\n\n## Как это работает\n\nЗдесь действуют три отдельных механизма, по одному на компонент, и они происходят из трёх отдельных литератур.\n\n**GHK-Cu** связывает медь и доставляет её клеткам. Медь - кофактор лизилоксидазы, формирующей поперечные связи коллагена, и супероксиддисмутазы. В культивируемых фибробластах кожи человека синтез коллагена измеряли в диапазоне пикомолярных - наномолярных концентраций наряду с числом клеток, поэтому показателем была выработка в расчёте на клетку (PMID 3169264). Более широкая литература по экспрессии генов для этого пептида рассмотрена в обзоре PMID 29986520.\n\n**BPC-157** в своей литературе описывается как действующий через ангиогенез и сигнализацию факторов роста, измеряемые на моделях соединительной ткани и слизистой желудка у грызунов. Он необычно стабилен в желудочном соке.\n\n**TB-500** связывает G-актин - мономер, из которого клетки собирают актиновый цитоскелет. Связывание части этого пула - молекулярный механизм, лежащий в основе показателей миграции и ангиогенеза, описанных в модельных системах сердца, кожи и роговицы (PMID 36464872).\n\nОдин момент стоит указать прямо на странице: исследования, тестирующего эти три пептида в комбинации, ни на каком виде, не найдено. Каждый из приведённых выше результатов относится к исследованию одного компонента. Любое утверждение о совместном действии этих трёх пептидов - вывод, а не данные, и именно поэтому мы публикуем показатели содержания по каждому компоненту вместо единого показателя чистоты смеси.\n\nДля восстановления стандартным растворителем в опубликованных протоколах служит бактериостатическая или стерильная вода.\n\n<InlineRelated slug=\"bacteriostatic-water\" label=\"Стандартный растворитель для восстановления\" />\n\n<SectionDivider />\n\n## Документация\n\n<QualitySpecs title=\"Спецификация материала\">\n  <Spec label=\"Состав\" value=\"GHK-Cu 50 мг + BPC-157 10 мг + TB-500 10 мг, смесь исследовательского качества (70 мг в сумме)\" />\n  <Spec label=\"Чистота\" value=\"≥98% для каждого компонента (подтверждено методом HPLC)\" />\n  <Spec label=\"Метод тестирования\" value=\"HPLC + масс-спектрометрия\" />\n  <Spec label=\"Форма\" value=\"Лиофилизированный порошок\" />\n  <Spec label=\"Обычное хранение (в невскрытом флаконе)\" value=\"-20 °C длительно, от 2 до 8 °C кратковременно, в защищённом от света месте\" />\n  <Spec label=\"Обычное хранение (восстановленный раствор)\" value=\"от 2 до 8 °C, обычно используется в течение 30 дней\" />\n  <Spec label=\"CoA\" value=\"Для конкретной партии, независимая лаборатория (Janoshik)\" />\n</QualitySpecs>\n\n<LabReport />\n\n<PubMedRefs title=\"Избранные исследования\">\n  <PubMedRef pmid=\"3169264\" title=\"Stimulation of collagen synthesis in fibroblast cultures by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+\">FEBS Lett, 1988; культура фибробластов кожи человека</PubMedRef>\n  <PubMedRef pmid=\"29986520\" title=\"Regenerative and Protective Actions of the GHK-Cu Peptide in the Light of the New Gene Data\">Int J Mol Sci, 2018; обзор, построенный на профилях экспрессии генов</PubMedRef>\n  <PubMedRef pmid=\"26236730\" title=\"GHK Peptide as a Natural Modulator of Multiple Cellular Pathways in Skin Regeneration\">Biomed Res Int, 2015; обзор данных по коллагену и иммунным путям</PubMedRef>\n  <PubMedRef pmid=\"40672369\" title=\"Exploring the beneficial effects of GHK-Cu on an experimental model of colitis and the underlying mechanisms\">Front Pharmacol, 2025; модель на мышах, маркеры воспалительного пути</PubMedRef>\n  <PubMedRef pmid=\"41754849\" title=\"Tendon, Ligament, and Muscle Injury, Osteotendinous, Myotendinous, and Muscle-to-Bone Junction Therapy Perspectives with Growth Factors and Stable Gastric Pentadecapeptide BPC 157-A Review\">Обзор литературы по моделям на грызунах</PubMedRef>\n  <PubMedRef pmid=\"40131143\" title=\"Safety of Intravenous Infusion of BPC157 in Humans: A Pilot Study\">2025; первое пилотное исследование безопасности у людей, малая выборка</PubMedRef>\n  <PubMedRef pmid=\"36464872\" title=\"Thymosin β4 and Actin: Binding Modes, Biological Functions and Clinical Applications\">2023; канонический обзор механизма связывания актина</PubMedRef>\n</PubMedRefs>\n\n<Callout type=\"warning\" title=\"Только для исследовательского использования\">\nЭтот материал продаётся исключительно для исследований in vitro и лабораторного использования. Не предназначен для употребления человеком или животными, для медицинского, косметического или бытового применения. Подходит только для профессиональных лабораторных условий.\n</Callout>","shortDescription":"GLOW - совместно лиофилизированный флакон с GHK-Cu, BPC-157 и TB-500 в фиксированном массовом соотношении 50:10:10, 70 мг в сумме. У каждого пептида своя опубликованная литература; ни одно исследование не тестировало все три вместе. Содержание по каждому компоненту в CoA партии.","metaTitle":"Купить смесь GLOW (GHK-Cu, BPC-157, TB-500) | доставка по ЕС","metaDescription":"GLOW: совместно лиофилизированные GHK-Cu 50 мг, BPC-157 10 мг, TB-500 10 мг. CoA Janoshik по каждому компоненту, доставка по ЕС. Только исследования in vitro."},{"id":"38fa96e8-0544-44e2-a082-6443378b4b63","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","locale":"it","name":"GLOW","description":"<ProductHighlights>\n  <Highlight icon=\"atom\" title=\"Tre peptidi, un flaconcino\">\n    GHK-Cu, BPC-157 e TB-500, co-liofilizzati in un rapporto fisso di massa 50:10:10, 70 mg totali. Le quantità per componente sono nelle specifiche del materiale qui sotto.\n  </Highlight>\n  <Highlight icon=\"dna\" title=\"GHK-Cu: sintesi di collagene in coltura\">\n    Gli studi sui fibroblasti hanno misurato la sintesi di collagene a concentrazioni da picomolari a nanomolari, insieme al numero di cellule (PMID 3169264).\n  </Highlight>\n  <Highlight icon=\"shield\" title=\"BPC-157: pentadecapeptide gastrico\">\n    Una sequenza di 15 residui derivata da una proteina del succo gastrico, studiata in modelli di roditore con angiogenesi e segnalazione dei fattori di crescita come meccanismo proposto.\n  </Highlight>\n  <Highlight icon=\"heart\" title=\"TB-500: timosina beta-4 a lunghezza intera\">\n    Il peptide completo di 43 amminoacidi, confermato dal CoA, non il breve frammento Ac-LKKTETQ venduto altrove sotto lo stesso nome. Lega la G-actina, il monomero del citoscheletro actinico.\n  </Highlight>\n  <Highlight icon=\"leaf\" title=\"Dati del CoA per singolo componente\">\n    Il rapporto di lotto indica il contenuto misurato per ciascuno dei tre peptidi separatamente, l'unico modo significativo di certificare un flaconcino multicomponente.\n  </Highlight>\n  <Highlight icon=\"microscope\" title=\"Studiati separatamente, non come miscela\">\n    Non è stato individuato alcuno studio che testasse questa combinazione di tre peptidi in nessuna specie. Il rapporto è una scelta di formulazione, non un riscontro.\n  </Highlight>\n</ProductHighlights>\n\n<ResearchTags title=\"Aree di ricerca\">\n  <Tag>Complesso del rame</Tag>\n  <Tag>Sintesi di collagene</Tag>\n  <Tag>Legame all'actina</Tag>\n  <Tag>Angiogenesi</Tag>\n  <Tag>Migrazione cellulare</Tag>\n  <Tag>Modelli nel roditore</Tag>\n</ResearchTags>\n\n## Cos'è GLOW\n\nGLOW è una miscela di ricerca a tre peptidi in un unico flaconcino liofilizzato: GHK-Cu, BPC-157 e TB-500 in un rapporto fisso di massa 50:10:10, 70 mg in totale. I tre vengono essiccati per congelamento insieme, quindi quel rapporto è fissato in fase di formulazione e non può essere modificato dopo la ricostituzione.\n\nIl GHK-Cu è il complesso di rame(II) del tripeptide umano naturale glicil-istidil-lisina, studiato principalmente in coltura di fibroblasti e in cute ex vivo. Il BPC-157 è una sequenza di 15 amminoacidi derivata dalla proteina del succo gastrico BPGP, studiata in modelli di roditore. Il TB-500 è la timosina beta-4 a lunghezza intera, una proteina legante l'actina di 43 amminoacidi presente nella maggior parte dei tipi cellulari; il nostro materiale è confermato dal CoA come la sequenza completa anziché il breve frammento che parte del mercato vende sotto lo stesso nome.\n\nForniamo GLOW come polvere essiccata per congelamento solo per la ricerca di laboratorio. In soluzione assume una tenue tonalità dal blu al blu-verde, che deriva dallo ione rame nel GHK-Cu e da nient'altro.\n\n## Come agisce\n\nQui ci sono tre meccanismi separati, uno per componente, e provengono da tre letterature separate.\n\n**GHK-Cu** lega il rame e lo presenta alle cellule. Il rame è il cofattore della lisil ossidasi, che reticola il collagene, e della superossido dismutasi. In fibroblasti cutanei umani in coltura, la sintesi di collagene è stata misurata a concentrazioni da picomolari a nanomolari insieme al numero di cellule, quindi il parametro era la produzione per cellula (PMID 3169264). La letteratura più ampia sull'espressione genica di questo peptide è passata in rassegna nel PMID 29986520.\n\n**Il BPC-157** è descritto nella sua letteratura come agente attraverso l'angiogenesi e la segnalazione dei fattori di crescita, misurate in modelli di roditore di tessuto connettivo e della mucosa gastrica. È insolitamente stabile nel succo gastrico.\n\n**Il TB-500** lega la G-actina, il monomero da cui le cellule assemblano il citoscheletro actinico. Sequestrare parte di quel pool è il meccanismo molecolare dietro gli endpoint di migrazione e angiogenesi riportati in sistemi modello cardiaci, dermici e corneali (PMID 36464872).\n\nUn punto va detto chiaramente nel testo: non è stato individuato alcuno studio che testasse questi tre peptidi come combinazione, in nessuna specie. Ogni risultato sopra riportato appartiene a uno studio su un singolo componente. Qualsiasi affermazione sull'azione congiunta dei tre è un'inferenza e non un dato, motivo per cui pubblichiamo cifre di contenuto per singolo componente anziché un unico valore di purezza combinato.\n\nPer la ricostituzione, il solvente standard nei protocolli pubblicati è acqua batteriostatica o sterile.\n\n<InlineRelated slug=\"bacteriostatic-water\" label=\"Solvente standard per la ricostituzione\" />\n\n<SectionDivider />\n\n## Documentazione\n\n<QualitySpecs title=\"Specifiche del materiale\">\n  <Spec label=\"Composizione\" value=\"GHK-Cu 50mg + BPC-157 10mg + TB-500 10mg, miscela di grado ricerca (70mg totali)\" />\n  <Spec label=\"Purezza\" value=\"≥98% (verificata HPLC, ogni componente)\" />\n  <Spec label=\"Metodo di test\" value=\"HPLC + spettrometria di massa\" />\n  <Spec label=\"Forma\" value=\"Polvere liofilizzata\" />\n  <Spec label=\"Conservazione tipica (sigillato)\" value=\"-20 °C a lungo termine, da 2 a 8 °C a breve termine, protetto dalla luce\" />\n  <Spec label=\"Conservazione tipica (ricostituito)\" value=\"da 2 a 8 °C, utilizzato solitamente entro 30 giorni\" />\n  <Spec label=\"CoA\" value=\"Specifico per lotto, terze parti (Janoshik)\" />\n</QualitySpecs>\n\n<LabReport />\n\n<PubMedRefs title=\"Ricerca selezionata\">\n  <PubMedRef pmid=\"3169264\" title=\"Stimulation of collagen synthesis in fibroblast cultures by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+\">FEBS Lett, 1988; coltura di fibroblasti cutanei umani</PubMedRef>\n  <PubMedRef pmid=\"29986520\" title=\"Regenerative and Protective Actions of the GHK-Cu Peptide in the Light of the New Gene Data\">Int J Mol Sci, 2018; rassegna costruita su profili di espressione genica</PubMedRef>\n  <PubMedRef pmid=\"26236730\" title=\"GHK Peptide as a Natural Modulator of Multiple Cellular Pathways in Skin Regeneration\">Biomed Res Int, 2015; rassegna dei dati su collagene e vie immunitarie</PubMedRef>\n  <PubMedRef pmid=\"40672369\" title=\"Exploring the beneficial effects of GHK-Cu on an experimental model of colitis and the underlying mechanisms\">Front Pharmacol, 2025; modello nel topo, marcatori delle vie infiammatorie</PubMedRef>\n  <PubMedRef pmid=\"41754849\" title=\"Tendon, Ligament, and Muscle Injury, Osteotendinous, Myotendinous, and Muscle-to-Bone Junction Therapy Perspectives with Growth Factors and Stable Gastric Pentadecapeptide BPC 157-A Review\">Rassegna della letteratura sui modelli nel roditore</PubMedRef>\n  <PubMedRef pmid=\"40131143\" title=\"Safety of Intravenous Infusion of BPC157 in Humans: A Pilot Study\">2025; primo studio pilota di sicurezza sull'uomo, campione ridotto</PubMedRef>\n  <PubMedRef pmid=\"36464872\" title=\"Thymosin β4 and Actin: Binding Modes, Biological Functions and Clinical Applications\">2023; rassegna canonica del meccanismo di legame all'actina</PubMedRef>\n</PubMedRefs>\n\n<Callout type=\"warning\" title=\"Solo per uso di ricerca\">\nQuesto materiale è venduto esclusivamente per uso di ricerca in vitro e di laboratorio. Non destinato al consumo umano o animale, né ad applicazioni mediche, cosmetiche o domestiche. Adatto solo ad ambienti di laboratorio professionali.\n</Callout>","shortDescription":"GLOW è un flaconcino co-liofilizzato contenente GHK-Cu, BPC-157 e TB-500 in un rapporto fisso di massa 50:10:10, 70 mg totali. Ogni peptide ha una propria letteratura pubblicata; nessuno studio ha testato i tre insieme. Contenuto per componente sul CoA di lotto.","metaTitle":"Acquista Miscela GLOW (GHK-Cu, BPC-157, TB-500) | Spedizione UE","metaDescription":"GLOW: GHK-Cu 50 mg, BPC-157 10 mg, TB-500 10 mg co-liofilizzati. CoA Janoshik per componente, spedizione UE. Solo per ricerca in vitro."},{"id":"361e3174-3a2d-463f-8103-77ad89f6daa7","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","locale":"pl","name":"GLOW","description":"<ProductHighlights>\n  <Highlight icon=\"atom\" title=\"Trzy peptydy, jedna fiolka\">\n    GHK-Cu, BPC-157 i TB-500, wspólnie liofilizowane w stałym stosunku masowym 50:10:10, łącznie 70 mg. Ilości poszczególnych składników znajdują się w specyfikacji materiału poniżej.\n  </Highlight>\n  <Highlight icon=\"dna\" title=\"GHK-Cu: synteza kolagenu w hodowli\">\n    Badania na fibroblastach zmierzyły syntezę kolagenu w zakresie stężeń pikomolarnych do nanomolarnych, wraz z liczbą komórek (PMID 3169264).\n  </Highlight>\n  <Highlight icon=\"shield\" title=\"BPC-157: żołądkowy pentadekapeptyd\">\n    15-resztowa sekwencja pochodząca z białka soku żołądkowego, badana w modelach gryzoni, z angiogenezą i sygnalizacją czynników wzrostu jako proponowanym mechanizmem.\n  </Highlight>\n  <Highlight icon=\"heart\" title=\"TB-500: pełnej długości tymozyna beta-4\">\n    Pełny 43-aminokwasowy peptyd, potwierdzony CoA, a nie krótki fragment Ac-LKKTETQ sprzedawany gdzie indziej pod tą samą nazwą. Wiąże G-aktynę, monomer cytoszkieletu aktynowego.\n  </Highlight>\n  <Highlight icon=\"leaf\" title=\"Wartości CoA dla każdego składnika\">\n    Raport partii podaje zmierzoną zawartość każdego z trzech peptydów osobno, co jest jedynym sensownym sposobem certyfikowania fiolki wieloskładnikowej.\n  </Highlight>\n  <Highlight icon=\"microscope\" title=\"Badane osobno, nie jako mieszanka\">\n    Nie zidentyfikowano żadnego badania testującego tę trójskładnikową kombinację u jakiegokolwiek gatunku. Stosunek to wybór formulacyjny, a nie wynik badania.\n  </Highlight>\n</ProductHighlights>\n\n<ResearchTags title=\"Obszary badań\">\n  <Tag>Kompleks miedzi</Tag>\n  <Tag>Synteza kolagenu</Tag>\n  <Tag>Wiązanie aktyny</Tag>\n  <Tag>Angiogeneza</Tag>\n  <Tag>Migracja komórek</Tag>\n  <Tag>Modele gryzoni</Tag>\n</ResearchTags>\n\n## Czym jest GLOW\n\nGLOW to trzypeptydowa mieszanka badawcza w jednej liofilizowanej fiolce: GHK-Cu, BPC-157 i TB-500 w stałym stosunku masowym 50:10:10, łącznie 70 mg. Cała trójka jest suszona przez zamrażanie razem, więc ten stosunek jest ustalony na etapie formulacji i nie można go zmienić po rekonstytucji.\n\nGHK-Cu to kompleks miedzi(II) z naturalnym ludzkim tripeptydem glicylo-histydylo-lizyna, badany głównie w hodowli fibroblastów i na skórze ex vivo. BPC-157 to 15-aminokwasowa sekwencja pochodząca z białka soku żołądkowego BPGP, badana w modelach gryzoni. TB-500 to pełnej długości tymozyna beta-4, 43-aminokwasowe białko wiążące aktynę obecne w większości typów komórek; nasz materiał jest potwierdzony CoA jako pełna sekwencja, a nie krótki fragment, który część rynku sprzedaje pod tą samą nazwą.\n\nDostarczamy GLOW jako suszony przez zamrażanie proszek wyłącznie do badań laboratoryjnych. W roztworze przybiera lekki niebieski do niebiesko-zielonego odcień, pochodzący od jonu miedzi w GHK-Cu i od niczego więcej.\n\n## Jak to działa\n\nSą tu trzy odrębne mechanizmy, po jednym dla każdego składnika, pochodzące z trzech osobnych zbiorów literatury.\n\n**GHK-Cu** wiąże miedź i prezentuje ją komórkom. Miedź jest kofaktorem oksydazy lizylowej, która sieciuje kolagen, oraz dysmutazy ponadtlenkowej. W hodowlach ludzkich fibroblastów skóry zmierzono syntezę kolagenu w zakresie stężeń pikomolarnych do nanomolarnych wraz z liczbą komórek, więc parametrem była produkcja na komórkę (PMID 3169264). Szersza literatura dotycząca ekspresji genów tego peptydu jest omówiona w PMID 29986520.\n\n**BPC-157** jest w swojej literaturze opisywany jako działający poprzez angiogenezę i sygnalizację czynników wzrostu, mierzone w modelach gryzoni dotyczących tkanki łącznej i błony śluzowej żołądka. Jest niezwykle stabilny w soku żołądkowym.\n\n**TB-500** wiąże G-aktynę, monomer, z którego komórki budują cytoszkielet aktynowy. Sekwestracja części tej puli jest mechanizmem molekularnym stojącym za punktami końcowymi migracji i angiogenezy zgłaszanymi w układach modelowych serca, skóry i rogówki (PMID 36464872).\n\nJedną rzecz warto powiedzieć wprost: nie zidentyfikowano żadnego badania testującego te trzy peptydy jako kombinację, u jakiegokolwiek gatunku. Każdy z powyższych wyników należy do badania jednego składnika. Wszystko, co mówi się o wspólnym działaniu tej trójki, jest wnioskowaniem, a nie danymi, dlatego też publikujemy wartości zawartości dla każdego składnika osobno, zamiast jednej łącznej liczby czystości.\n\nDo rekonstytucji standardowym rozpuszczalnikiem w opublikowanych protokołach jest woda bakteriostatyczna lub sterylna.\n\n<InlineRelated slug=\"bacteriostatic-water\" label=\"Standardowy rozpuszczalnik do rekonstytucji\" />\n\n<SectionDivider />\n\n## Dokumentacja\n\n<QualitySpecs title=\"Specyfikacja materiału\">\n  <Spec label=\"Skład\" value=\"GHK-Cu 50mg + BPC-157 10mg + TB-500 10mg, mieszanka jakości badawczej (łącznie 70mg)\" />\n  <Spec label=\"Czystość\" value=\"≥98% (zweryfikowane HPLC, każdy składnik)\" />\n  <Spec label=\"Metoda badania\" value=\"HPLC + spektrometria mas\" />\n  <Spec label=\"Postać\" value=\"Liofilizowany proszek\" />\n  <Spec label=\"Typowe przechowywanie (zamknięte)\" value=\"-20 °C długoterminowo, 2 do 8 °C krótkoterminowo, chronione przed światłem\" />\n  <Spec label=\"Typowe przechowywanie (po rozpuszczeniu)\" value=\"2 do 8 °C, zwykle zużywane w ciągu 30 dni\" />\n  <Spec label=\"CoA\" value=\"Specyficzne dla partii, strona trzecia (Janoshik)\" />\n</QualitySpecs>\n\n<LabReport />\n\n<PubMedRefs title=\"Wybrane badania\">\n  <PubMedRef pmid=\"3169264\" title=\"Stimulation of collagen synthesis in fibroblast cultures by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+\">FEBS Lett, 1988; hodowla ludzkich fibroblastów skóry</PubMedRef>\n  <PubMedRef pmid=\"29986520\" title=\"Regenerative and Protective Actions of the GHK-Cu Peptide in the Light of the New Gene Data\">Int J Mol Sci, 2018; przegląd oparty na profilach ekspresji genów</PubMedRef>\n  <PubMedRef pmid=\"26236730\" title=\"GHK Peptide as a Natural Modulator of Multiple Cellular Pathways in Skin Regeneration\">Biomed Res Int, 2015; przegląd danych o kolagenie i szlaku immunologicznym</PubMedRef>\n  <PubMedRef pmid=\"40672369\" title=\"Exploring the beneficial effects of GHK-Cu on an experimental model of colitis and the underlying mechanisms\">Front Pharmacol, 2025; model mysi, markery szlaku zapalnego</PubMedRef>\n  <PubMedRef pmid=\"41754849\" title=\"Tendon, Ligament, and Muscle Injury, Osteotendinous, Myotendinous, and Muscle-to-Bone Junction Therapy Perspectives with Growth Factors and Stable Gastric Pentadecapeptide BPC 157-A Review\">Przegląd literatury dotyczącej modeli gryzoni</PubMedRef>\n  <PubMedRef pmid=\"40131143\" title=\"Safety of Intravenous Infusion of BPC157 in Humans: A Pilot Study\">2025; pierwsze pilotażowe badanie bezpieczeństwa u ludzi, mała liczebność</PubMedRef>\n  <PubMedRef pmid=\"36464872\" title=\"Thymosin β4 and Actin: Binding Modes, Biological Functions and Clinical Applications\">2023; kanoniczny przegląd mechanizmu wiązania aktyny</PubMedRef>\n</PubMedRefs>\n\n<Callout type=\"warning\" title=\"Wyłącznie do celów badawczych\">\nTen materiał jest sprzedawany ściśle do badań in vitro i użytku laboratoryjnego. Nie jest przeznaczony do spożycia przez ludzi ani zwierzęta, ani do zastosowań medycznych, kosmetycznych lub domowych. Nadaje się wyłącznie do profesjonalnych środowisk laboratoryjnych.\n</Callout>","shortDescription":"GLOW to wspólnie liofilizowana fiolka zawierająca GHK-Cu, BPC-157 i TB-500 w stałym stosunku masowym 50:10:10, łącznie 70 mg. Każdy peptyd ma własną opublikowaną literaturę; żadne badanie nie testowało tej trójki razem. Zawartość poszczególnych składników na CoA partii.","metaTitle":"Kup mieszankę GLOW (GHK-Cu, BPC-157, TB-500) | Wysyłka EU","metaDescription":"GLOW: wspólnie liofilizowane GHK-Cu 50 mg, BPC-157 10 mg, TB-500 10 mg. CoA Janoshik dla każdego składnika, wysyłka EU. Wyłącznie do badań in vitro."}],"variants":[{"id":"1a43bedd-4cea-466b-803e-a615cff6da49","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","sku":"PD-GLOW70-70MG","dosage":"70mg","price":97.99,"compareAtPrice":114.99,"stock":19,"maxQuantityPerOrder":0,"weight":null,"isDefault":true,"isVisible":true}],"labReports":[{"id":"30b9daf2-5508-4de0-a39b-c0cb1c290c8f","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","batchNumber":"Green","testDate":"2025-10-30T00:00:00.000Z","labName":"Janoshik","reportUrl":"https://peptidesdirect.io/media/pep-shop/coa/glow-70mg-janoshik-85193.png","verificationUrl":"https://verify.janoshik.com/tests/85193_UD6BMCBK162L","publicCode":null,"purity":null,"content":"GHK-Cu 46.38 mg · BPC-157 11.29 mg · TB-500 10.05 mg","source":"manufacturer","testedIdentity":true,"testedPurity":true,"testedContent":true,"testedMicrobial":false,"testedEndotoxin":false,"testedHeavyMetals":false,"endotoxinEuMg":null,"heavyMetalsPass":null,"microbialPass":null,"createdAt":"2026-03-05T18:29:15.381Z"},{"id":"36dc8947-4d03-4f7e-8eb1-00cf5d64fa42","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","batchNumber":"LYO-0261","testDate":"2026-06-29T10:24:00.000Z","labName":"Liquilabs","reportUrl":"https://peptidesdirect.io/media/pep-shop/documents/liquilabs-glow-lyo-0261.pdf","verificationUrl":"https://base.liquilabs.cz/@@public_report?ar_uid=99664735492340769d9b1795f80526a6","publicCode":null,"purity":99,"content":"BPC-157 15.56 mg · GHK-Cu 52.6 mg · TB-500 8.68 mg","source":"independent","testedIdentity":true,"testedPurity":true,"testedContent":true,"testedMicrobial":true,"testedEndotoxin":true,"testedHeavyMetals":true,"endotoxinEuMg":0.001,"heavyMetalsPass":true,"microbialPass":true,"createdAt":"2026-06-29T13:11:22.719Z"}],"tags":["healing"],"images":[{"id":"0989c89a-751c-4e12-bec3-ad86f45c863f","productId":"ff9bb088-392e-4b1d-962e-3d07a7f8de50","url":"https://peptidesdirect.io/media/pep-shop/images/glow__70mg__obsidian-2026-08.jpg","alt":"GLOW 70mg vial","sortOrder":0,"variantId":"1a43bedd-4cea-466b-803e-a615cff6da49","createdAt":"2026-08-18T12:46:49.748Z"}],"faqs":[{"locale":"en","question":"What is GLOW?","answer":"GLOW is a three-peptide research blend in a single 70 mg vial: GHK-Cu, BPC-157 and TB-500, freeze-dried together at a fixed 50:10:10 mass ratio. GHK-Cu is a copper-binding tripeptide studied in fibroblast culture for collagen synthesis, BPC-157 a 15-residue gastric peptide studied in rodent models, and TB-500 the full-length 43-amino-acid actin-binding protein thymosin beta-4. No study testing the three as a combination was identified. Supplied for laboratory research only.","sortOrder":0},{"locale":"en","question":"How should I store GLOW?","answer":"Lyophilized GLOW is commonly kept at -20°C for longer storage or at 2-8°C for short-term storage. After reconstitution, the usual laboratory convention is refrigeration at 2-8°C and use within about 30 days; this is standard peptide-handling practice, not a stability result measured for this product. Protection from light is part of the usual handling convention.","sortOrder":1},{"locale":"en","question":"What purity is your GLOW blend?","answer":"Every batch of GLOW ships with a certificate of analysis from Janoshik Analytical, an independent third-party laboratory, at a minimum purity of 98%. We do not run a lab ourselves: the manufacturer commissions this test, and we pass the report on unchanged, with an online verification link on the product page. We also commissioned our own independent test at Liquilabs in Czechia, a full safety panel, and published it including a result that came back below the labelled amount.","sortOrder":2},{"locale":"en","question":"How do I reconstitute GLOW?","answer":"Add bacteriostatic water slowly along the inside wall of the vial. Gently swirl until dissolved - never shake. Use the recommended volume as indicated on the product label.","sortOrder":3},{"locale":"en","question":"How do GHK-Cu, BPC-157 and TB-500 work in GLOW, according to the published research on each?","answer":"Each of the three peptides carries a separate published mechanism, and none of it was generated with the three combined. GHK-Cu is a copper-binding tripeptide whose fibroblast studies measured collagen synthesis across picomolar to nanomolar concentrations (PMID 3169264). BPC-157 is a synthetic 15-amino-acid peptide whose readouts come from rodent connective-tissue models, functional, biomechanical and histological (PMID 16583442). TB-500 is the full-length 43-amino-acid thymosin beta-4, confirmed by our CoA; it binds monomeric actin, and the published endpoints are re-epithelialisation in a rat model and keratinocyte migration in vitro (PMID 10469335). GLOW puts these three separately studied molecules in one vial, but no published study has tested the fixed three-peptide combination itself.","sortOrder":4},{"locale":"en","question":"Is GLOW, or any of its three components, approved by the FDA, EMA, or any regulator?","answer":"No. GLOW is not an approved medicinal product, and none of GHK-Cu, BPC-157 or TB-500 (thymosin beta-4) is approved by the FDA, the EMA or any other regulator for human use. The furthest any component has gone is the ophthalmic form of thymosin beta-4 (RGN-259), which completed Phase 3 dry-eye trials (ARISE-1 to ARISE-3, ClinicalTrials.gov NCT02597803, NCT02974907, NCT03937882) without gaining approval. GHK-Cu's only registered human trial (NCT07437586) is a recruiting Phase 2 topical study with no results yet, and BPC-157 has one registered Phase 2 trial (NCT07437547) still underway. GLOW as a fixed combination has never been submitted to any regulator for any indication.","sortOrder":10},{"locale":"en","question":"How much bacteriostatic water should be used to reconstitute GLOW's 70 mg vial, and does the ratio between GHK-Cu, BPC-157 and TB-500 change with it?","answer":"There is no single fixed water volume for GLOW: the amount used sets the final concentration in milligrams per millilitre, and the product label recommendation or our reconstitution calculator works out that concentration for whichever volume is chosen. What does not change is the ratio between the three peptides. GHK-Cu, BPC-157 and TB-500 are combined and lyophilized at a fixed 50:10:10 mg ratio before the vial is ever reconstituted, so adding more or less water only dilutes or concentrates the mixture and never shifts the balance between the three components. A smaller volume gives a more concentrated solution and a larger volume a more dilute one, but the 50:10:10 proportion is fixed at manufacture.","sortOrder":11},{"locale":"en","question":"What does our own third-party CoA show for GLOW, and how can a specific batch be verified?","answer":"Every batch of GLOW carries a certificate of analysis; we do not run a lab ourselves. Our manufacturer-commissioned Janoshik report, batch Green tested 2025-10-30, states measured content per component against the 50/10/10 mg label: GHK-Cu 46.38 mg, BPC-157 11.29 mg, TB-500 10.05 mg. It is verifiable at verify.janoshik.com. We also paid for one independent panel ourselves, at Liquilabs in Czechia, batch LYO-0261 tested 2026-06-29, covering identity, purity, content, microbial contamination, endotoxin and heavy metals. That report states GHK-Cu 52.6 mg, BPC-157 15.56 mg, TB-500 8.68 mg, below label on TB-500. Endotoxin came in at 0.001 EU per mg, with the microbial and heavy-metal screens passing. Both reports are linked from the CoA page for that batch code.","sortOrder":12},{"locale":"en","question":"How does GLOW compare to WOLVERINE and KLOW in composition?","answer":"WOLVERINE is the two-peptide version: BPC-157 plus TB-500, 10 mg total per vial, with no GHK-Cu. GLOW holds those same two components at a higher per-component amount together with GHK-Cu, 70 mg total at a fixed 50:10:10 mass ratio. KLOW holds those three components plus KPV, 80 mg total at a fixed 50:10:10:10 ratio. Per-component amounts for each vial are on the respective material specification. None of the three fixed blends has its own human trial; the comparison above is one of published composition and single-component literature, not of tested combinations.","sortOrder":13},{"locale":"en","question":"How many mg of GHK-Cu, BPC-157 and TB-500 are in a GLOW blend vial, and does reconstitution change their fixed ratio?","answer":"The ratio is fixed. GLOW ships as a single lyophilized powder in which GHK-Cu, BPC-157 and TB-500 are already combined at 50:10:10 mg, so reconstituting the vial gives that same ratio in solution, and there is no way to draw more of one peptide and less of another from it. Anyone who wants to vary the ratio between the three, or study one in isolation, needs the individual GHK-Cu, BPC-157 or TB-500 vials rather than the GLOW blend.","sortOrder":14},{"locale":"en","question":"Why does GLOW's reconstituted solution look bluish, and does that mean anything is wrong?","answer":"The blue tint comes from the copper(II) ion bound in GHK-Cu; copper-tripeptide complexes are characteristically blue in aqueous solution, which is why WOLVERINE (no GHK-Cu) reconstitutes clear while GLOW and KLOW do not. The color is a property of the complex itself, not a sign of contamination. Copper-containing solutions like this one are handled the same way as other light-sensitive compounds, kept out of direct light in addition to refrigeration, consistent with the handling convention already given for GLOW.","sortOrder":15},{"locale":"en","question":"Is the TB-500 in GLOW the full-length thymosin beta-4, or the shorter fragment some sellers use under that name?","answer":"It is the full-length 43-amino-acid thymosin beta-4, confirmed by our own CoA, not the short synthetic Ac-LKKTETQ fragment that some sellers market under the same TB-500 name. This matters because the published wound-model and cardiac literature, for example PMID 10469335 and PMID 25015963, was generated with the full-length peptide, so that is the material the evidence actually applies to. A vial labelled TB-500 without a CoA confirming the full 43-amino-acid sequence could contain either form, which is why we publish the certificate rather than asking for trust in the label alone.","sortOrder":17},{"locale":"en","question":"How should the GLOW vial be stored before and after reconstitution, and how long does it stay stable?","answer":"GLOW's lyophilized powder is commonly kept refrigerated at 2-8°C for short-term storage, or frozen at -20°C for longer-term storage, the same handling we already give GHK-Cu on its own. Once reconstituted with bacteriostatic water, the vial is commonly kept refrigerated at 2-8°C, protected from light (the bound copper makes it more light-sensitive than a plain peptide), and not refrozen. As practical guidance, consistent with the roughly 4-week window we use for our other reconstituted lyophilized peptides, the usual convention for GLOW is use within about 4 weeks. No published stability study covers this specific three-peptide combination, so this is conservative handling guidance, not a validated shelf-life figure.","sortOrder":18},{"locale":"en","question":"Is it legal to buy and receive the GLOW blend in my EU country, and do customs or import duties apply?","answer":"This is general information, not legal advice. Within the EU, parcels move across the internal market without stopping at customs, and research peptides sold as laboratory reagents, not as medicines, are not scheduled or controlled substances in most member states. Rules and enforcement differ by country and can change, so the buyer is responsible for knowing and following their own country's laws on possessing and using research compounds. We ship only to the EU countries and addresses our checkout currently lists; our shipping policy shows the current country coverage and any exceptions.","sortOrder":19},{"locale":"en","question":"Why choose the pre-mixed GLOW blend instead of buying GHK-Cu, BPC-157 and TB-500 separately and combining them yourself?","answer":"Buying GLOW pre-mixed means one co-lyophilized vial at a fixed 50:10:10 mg ratio, one reconstitution step and one fridge slot, instead of three separate vials of GHK-Cu, BPC-157 and TB-500 that each need their own water volume and storage routine. It also removes any risk of a bench-mixing error skewing the ratio between the three peptides, since they are combined before the vial is freeze-dried. This is a convenience and consistency tradeoff, not an efficacy claim: no study has tested the three-peptide combination itself. Buying the same peptides as three single vials is typically the lower-cost route per milligram, since GLOW's price also covers the mixing and consistency it provides.","sortOrder":20},{"locale":"en","question":"Does unrefrigerated shipping affect the quality of this product?","answer":"This product ships unrefrigerated as a lyophilised (freeze-dried) powder in a sealed vial. Solid formulations are frequently required to maintain protein stability during storage and transport (PMID 25565441); temperature and moisture influence degradation in the solid state (PMID 10229638). Solid human insulin was studied for six months at 25°C and 40°C (PMID 39725225), solid semaglutide retained its native structure up to 60°C (PMID 42086873), and a freeze-dried secretin formulation showed a 20 to 27 percent assay decrease at eight weeks (PMID 25636302). Our parcels travel 1 to 2 working days within Germany and 3 to 10 across the EU, longer outside the EU. After delivery, store the sealed vial refrigerated or frozen, and refrigerate after reconstitution. The cited studies describe other solid peptide formulations; they do not measure this specific product, so we state the transit facts and the storage rules rather than a guarantee.","sortOrder":24},{"locale":"en","question":"Is reconstituted GHK-Cu expected to look bright blue, and does uneven powder, clumping, or gritty residue mean it's fake or degraded?","answer":"The blue is chemistry, not branding: the bound copper(II) ion gives GHK-Cu solutions their blue-to-blue-green tint, which our pages document as the expected optical signature, and GLOW and KLOW take on the same tint from their GHK-Cu share, while a copper-free blend like WOLVERINE does not. Shade intensity varies with concentration and lighting, so 'less vivid than someone's photo' is not a potency reading. On the dry cake: pharmaceutical freeze-drying literature documents that shrinkage, cracking, uneven texture and patchy appearance occur even in fully in-spec GMP products (PMID 28341598), because cake cosmetics depend on the drying run, not on content; no published appearance specification for copper-peptide lyophilizates was identified. So an uneven or partially clumped cake is not, by itself, evidence of a fake or degraded vial. The judgments that DO matter are the after-reconstitution ones our troubleshooting pages define: gentle technique first (room temperature, water down the glass wall, swirl, rest), a slight haze occurs with many peptides and often clears within 5 to 20 minutes, while persistent turbidity, solid flecks that never dissolve, or anything resembling growth is a reject, and visible particulate matter is a formal rejection category in injectable-product practice generally. Identity and content live in the batch CoA, not in the cake's looks; and a vial that fails the dissolve test is a case for our replacement process, not for squinting.","sortOrder":28},{"locale":"en","question":"Has any published study defined an optimal ratio between GHK-Cu, BPC-157 and TB-500, and what does GLOW's fixed 50:10:10 blend mean compared with separate vials?","answer":"No study testing GHK-Cu, BPC-157 and TB-500 together was identified in the cited PubMed and ClinicalTrials.gov searches; the cited PubMed result is a narrative review (PMID 42635865), and the cited registry records are single-agent studies of topical GHK-Cu (NCT07437586) and of BPC-157 (NCT07437547). The amounts used in the separate single-agent studies are not expressed as a shared mass ratio and come from incomparable experimental settings, so they cannot be converted into one. Our GLOW vial is specified as GHK-Cu, BPC-157 and TB-500 at a fixed 50:10:10 mass ratio (product specification). A fixed blend permits only joint scaling of its three component amounts, whereas separate vials keep those amounts independent.","sortOrder":32}],"ratingAvg":0,"ratingCount":0,"productReviews":[]}