GLOW

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Kit (10 Vials)
Research Use Only: These products are intended for laboratory research purposes only. By purchasing, you confirm you are a qualified researcher and understand this product is not for personal use.
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Description

GLOW (BPC-157 + TB-500 + GHK-Cu)

GLOW is a research-grade triple-peptide blend combining BPC-157, TB-500, and GHK-Cu — three individually well-characterised compounds — into a single formulation designed to enable multi-pathway investigation of tissue repair, cellular regeneration, and extracellular matrix remodelling within a unified experimental protocol.

Component Overview

  • BPC-157 (Body Protection Compound-157) is a synthetic 15-amino acid gastric peptide studied for its activation of the VEGFR2-Akt-eNOS signalling axis, promoting new blood vessel formation, fibroblast activity, and anti-inflammatory effects across multiple tissue models (Vasireddi et al., 2025)
  • TB-500 (Thymosin Beta-4 Fragment, LKKTETQ) is the active actin-binding region of Thymosin Beta-4, studied for its role in cell migration, wound re-epithelialisation, and new blood vessel growth, with re-epithelialisation rates up to 61% above controls in preclinical wound models (Philp et al., 2003)
  • GHK-Cu (Glycyl-L-Histidyl-L-Lysine Copper Complex) is a naturally occurring tripeptide that stimulates collagen and elastin synthesis in fibroblasts, modulates tissue-remodelling enzymes, and broadly upregulates gene expression pathways linked to wound healing and antioxidant defence (Maquart et al., 1988; Pickart & Margolina, 2018)

Combined Research Utility

Each peptide operates through a distinct but complementary mechanism — vascular signalling, cytoskeletal organisation, and extracellular matrix regulation respectively — allowing researchers to study additive or synergistic effects across multiple regenerative pathways within a single experimental model. This makes GLOW of particular interest for studies examining coordinated tissue responses, inflammation control, and collagen-driven structural repair.

For research use only. Not intended for use in humans or animals.

References

Maquart, F. X., Pickart, L., Laurent, M., Gillery, P., Monboisse, J. C., & Borel, J. P. (1988). https://pubmed.ncbi.nlm.nih.gov/3169264/

Philp, D., Badamchian, M., Scheremeta, B., Nguyen, M., Goldstein, A. L., & Kleinman, H. K. (2003). https://pubmed.ncbi.nlm.nih.gov/12581422/

Pickart, L., & Margolina, A. (2018). https://pmc.ncbi.nlm.nih.gov/articles/PMC6073405/

Vasireddi, N., Hahamyan, H., Salata, M. J., Karns, M., Calcei, J. G., Voos, J. E., & Apostolakos, J. M. (2025). https://pmc.ncbi.nlm.nih.gov/articles/PMC12313605/

Additional information

Size

70mg/vial

What are peptides?

Peptides are short chains of amino acids that act as signalling molecules in the body, playing a role in a wide range of biological processes including tissue repair, immune response, and cellular communication.

How are peptides used in research?

In research settings, peptides are studied for their ability to interact with specific receptors and biological pathways. This makes them valuable tools for scientific and laboratory analysis, helping researchers better understand how the body functions at a cellular level.

What payment methods do you accept?

We currently accept Credit Card, SEPA bank transfer, iDeal, Google Pay, Apple Pay, and Cryptocurrency (Bitcoin, Ethereum, and USDT).

How should I store my peptides?

All peptides are supplied in lyophilised (freeze-dried) form, ensuring stability during shipping and long-term storage. Unreconstituted vials should be kept in a cool, dry place away from direct light, with refrigeration recommended for extended periods. Once reconstituted for research purposes, peptides should be kept refrigerated and handled using sterile laboratory practices to maintain integrity throughout use.

How does shipping and delivery work?

Orders are processed and dispatched within 2 weeks of purchase. Shipping takes 48 hours through UPS Express Shipping. Order tracking is available directly on our website. Free shipping is applied automatically on all orders over €180.

Do you offer refunds or returns?

Due to the nature of research products, we are unable to accept returns. However if your order arrives damaged or incorrect please contact us within 48 hours.

How can I be sure of product quality?

All our products are lab-tested to ensure high purity and compliance with research-grade quality standards.

The Certificate of Analysis for this product is available on request. Please contact us and we'll send it over right away.

GLOW (BPC-157 + TB-500 + GHK-Cu)

GLOW is a research-grade triple-peptide blend combining BPC-157, TB-500, and GHK-Cu — three individually well-characterised compounds — into a single formulation designed to enable multi-pathway investigation of tissue repair, cellular regeneration, and extracellular matrix remodelling within a unified experimental protocol.

Component Overview

  • BPC-157 (Body Protection Compound-157) is a synthetic 15-amino acid gastric peptide studied for its activation of the VEGFR2-Akt-eNOS signalling axis, promoting new blood vessel formation, fibroblast activity, and anti-inflammatory effects across multiple tissue models (Vasireddi et al., 2025)
  • TB-500 (Thymosin Beta-4 Fragment, LKKTETQ) is the active actin-binding region of Thymosin Beta-4, studied for its role in cell migration, wound re-epithelialisation, and new blood vessel growth, with re-epithelialisation rates up to 61% above controls in preclinical wound models (Philp et al., 2003)
  • GHK-Cu (Glycyl-L-Histidyl-L-Lysine Copper Complex) is a naturally occurring tripeptide that stimulates collagen and elastin synthesis in fibroblasts, modulates tissue-remodelling enzymes, and broadly upregulates gene expression pathways linked to wound healing and antioxidant defence (Maquart et al., 1988; Pickart & Margolina, 2018)

Combined Research Utility

Each peptide operates through a distinct but complementary mechanism — vascular signalling, cytoskeletal organisation, and extracellular matrix regulation respectively — allowing researchers to study additive or synergistic effects across multiple regenerative pathways within a single experimental model. This makes GLOW of particular interest for studies examining coordinated tissue responses, inflammation control, and collagen-driven structural repair.

For research use only. Not intended for use in humans or animals.

References

Maquart, F. X., Pickart, L., Laurent, M., Gillery, P., Monboisse, J. C., & Borel, J. P. (1988). https://pubmed.ncbi.nlm.nih.gov/3169264/

Philp, D., Badamchian, M., Scheremeta, B., Nguyen, M., Goldstein, A. L., & Kleinman, H. K. (2003). https://pubmed.ncbi.nlm.nih.gov/12581422/

Pickart, L., & Margolina, A. (2018). https://pmc.ncbi.nlm.nih.gov/articles/PMC6073405/

Vasireddi, N., Hahamyan, H., Salata, M. J., Karns, M., Calcei, J. G., Voos, J. E., & Apostolakos, J. M. (2025). https://pmc.ncbi.nlm.nih.gov/articles/PMC12313605/