What is the GLOW blend?
GLOW is a three-component research peptide blend combining GHK-Cu (50 mg), BPC-157 (10 mg) and TB-500 (10 mg) in a single lyophilized vial. Each component is synthesized and verified separately, then combined before lyophilization. It is supplied for in-vitro laboratory research use only.
GLOW Blend research
Published work on GLOW Blend is qualitative in the framing below. Each item describes the focus of the research itself, not an outcome for any person.
- GHK-Cu. The copper tripeptide has been studied in research on skin remodeling, collagen signaling and the extracellular matrix.
- BPC-157. The 15-amino-acid pentadecapeptide has been the subject of tissue-repair studies in animal models.
- TB-500 (Thymosin Beta-4 fragment). Research has examined actin binding and cell-migration endpoints in cell and animal models.
- Combined-use research. The three compounds are frequently studied together in in-vitro repair and remodeling models.
GLOW Blend specifications
| CAS Number | GHK-Cu 89030-95-5 · BPC-157 137525-51-0 · TB-500 77591-33-4 |
|---|---|
| Synonyms | GLOW, GHK-Cu / BPC-157 / TB-500 blend |
| Composition | GHK-Cu 50 mg · BPC-157 10 mg · TB-500 10 mg |
| Molecular Formula | Provided per component on batch COA |
| Molecular Weight | Provided per component on batch COA |
| Sequence | Provided per component on batch COA |
| Purity | ≥99% by HPLC, each component |
| Physical Form | Lyophilized powder |
| Solubility | Soluble in bacteriostatic or sterile water |
| Storage | Store lyophilized at -20°C; protect from light |
| Shelf Life | 24+ months lyophilized at -20°C |
| Presentation | 70 mg total per vial (50/10/10 mg) |
GLOW Blend reconstitution & storage
Store the sealed lyophilized vial at -20°C. Reconstitute with bacteriostatic or sterile water by directing the stream against the vial wall; do not shake. After reconstitution, store refrigerated at 2 to 8°C and use within the period indicated on the batch COA. For laboratory research handling only.
GLOW Blend certificate of analysis (COA)
A batch-specific Certificate of Analysis accompanies every order, as it does for all peptides for laboratory research from PeptideX1. The COA documents identity and purity by HPLC for the lot you receive, along with the molecular data listed as provided on batch COA above. Third-party analytical reports are available on request.
GLOW Blend research references
- Pickart L, Margolina A. Regenerative and Protective Actions of the GHK-Cu Peptide. International Journal of Molecular Sciences. 2018. PubMed
- Sikiric P, Seiwerth S, Rucman R, et al. Brain-gut axis and pentadecapeptide BPC 157: theoretical and practical implications. Current Neuropharmacology. 2016. PubMed
- Goldstein AL, Hannappel E, Kleinman HK. Thymosin beta4: actin-sequestering protein moonlights to repair injured tissues. Trends in Molecular Medicine. 2005. PubMed
GLOW Blend FAQ
What is the GLOW blend?
GLOW is a three-component research peptide blend combining GHK-Cu (50 mg), BPC-157 (10 mg) and TB-500 (10 mg) in a single lyophilized vial. Each component is synthesized and verified separately, then combined before lyophilization. It is supplied for in-vitro laboratory research use only.
What purity does PeptideX1 GLOW Blend meet?
Each batch is ≥99% purity by HPLC, verified per batch on the accompanying Certificate of Analysis.
Is a Certificate of Analysis included?
Yes. A batch-specific Certificate of Analysis is included with every order.
How is it shipped and stored?
It ships lyophilized, sealed and desiccated. Store the sealed vial at -20°C and protect it from light.
What do the 50/10/10 mg figures mean?
They are the per-component amounts in each vial: GHK-Cu 50 mg, BPC-157 10 mg and TB-500 10 mg, for 70 mg of peptide in total.
How does GLOW differ from KLOW?
KLOW contains the same three peptides plus a fourth, KPV, at 10 mg. GLOW is the three-component version. Both are supplied strictly as research materials.
Is this product for human use?
No. It is sold strictly for in-vitro laboratory research use only. It is not for human or veterinary use.