Glow
Dermatological Research Blend - GHK-Cu, BPC-157 & TB-500 blend for skin-research protocols.
Glow is a co-formulated blend combining a copper peptide with two repair peptides, prepared for dermatological and regenerative research applications.
Glow pairs a copper peptide with two repair peptides for skin and matrix research, where the copper-delivery and tissue-repair mechanisms are frequently studied together. As with any blend, it is characterised by the identity and purity of its components on the lot COA.
Glow specifications
- Sequence
- GHK-Cu + BPC-157 + TB-500
- Presentation
- Lyophilised powder
- Documented purity
- 99.91% by HPLC
- Available sizes
- 70mg ($120)
- Archived COA lots
- 4
- Intended use
- Laboratory research use only. Not for human or veterinary use.
Studied pathways
- Skin matrix study - Investigated for combined collagen-signalling and repair activity in skin models.
Reported mechanisms in the literature
- Skin-matrix study - Combines a copper peptide with two repair peptides for study of collagen-signalling and repair activity together in skin-research models. (Combination research)
- Regenerative pathways - Investigated for overlap between matrix remodelling and tissue-repair signalling in dermatological and regenerative research. (Preclinical literature)
Glow frequently asked questions
What is Glow?
A co-formulated blend of GHK-Cu with BPC-157 and TB-500, prepared for dermatological and regenerative research.
Is Glow approved for cosmetic or human use?
No. It is a laboratory research material only; it is not a cosmetic, drug, or supplement.
How is it documented?
Each lot ships with its Certificate of Analysis.
Documented to 99.91% purity by HPLC · third-party COA every lot · from $120 · For laboratory research use only.
Related Regenerative & Repair compounds
- BPC-157 - Synthetic pentadecapeptide studied for VEGF and growth-factor receptor signalling.
- TB-500 - Thymosin β-4 fragment studied for actin regulation and tissue repair.
- BPC-157 / TB-500 - Co-formulated repair-research blend in a single vial.