Peptide Research
Glow: GHK-Cu, BPC-157 & TB-500 Blend Research
Published June 21, 2026
Research use only. This article is published for informational purposes relevant to in-vitro laboratory research. Nothing here constitutes a medical claim, diagnosis, or treatment recommendation. DRAGNZ PEPS compounds are sold strictly for laboratory research use by qualified persons aged 21 or older.
Glow is a multi-peptide research blend combining three well-characterized reference compounds: GHK-Cu (the glycyl-L-histidyl-L-lysine copper complex), BPC-157 (a synthetic gastric pentadecapeptide), and TB-500 (a synthetic fragment of Thymosin Beta-4). It is supplied as a single lyophilized research-grade preparation, with each component held to a ≥99% purity standard by RP-HPLC and identity confirmed by ESI-MS.
Composition
Blended peptide preparations are used in research when investigators want a fixed, documented combination of reference compounds rather than reconstituting and mixing each separately. Glow's three components are individually among the most studied peptides in their respective areas, which is why they are also offered as standalone catalog items.
The Component Chemistry
GHK-Cu is a copper-binding tripeptide studied in in-vitro matrix-remodeling and collagen-model research. BPC-157 is a 15-residue synthetic peptide used as a reference compound in preclinical angiogenesis and tissue-model work. TB-500 corresponds to the active region of Thymosin Beta-4, a peptide studied in cell-migration and actin-regulation research models.
Research Applications
Glow is used as a fixed-composition reference blend in laboratory research involving its three constituent peptides. Like all DRAGNZ PEPS compounds, it is supplied strictly for in-vitro laboratory research by qualified persons and is not for human or veterinary use. No efficacy, outcome, or human-use claims are made.
Handling and Documentation
Supplied lyophilized, Glow is reconstituted with bacteriostatic or sterile water for research use and stored frozen. The batch ships under a numbered certificate of analysis covering the blend, retrievable from the batch verification tool. For the individual compounds, see their dedicated articles and catalog pages.