BPC-157 10 MG Peptide
- ≥99% purity by HPLC
- Janoshik COA with every lot
- Lot-traceable from synthesis
- EU-synthesised
Specifications
Third Party Lab Tested
Every lot is independently HPLC-tested by Janoshik Analytical, Europe's reference laboratory for peptide purity assessment. The COA shipped with your order is theirs, not ours.
Storage & Handling
Lyophilized peptides should be stored below 16°C, protected from light and moisture, for up to 24 months. Once reconstituted, refrigerate and use within 30 days for protocol consistency.
Reconstitution
Reconstitute with bacteriostatic water using the volumes below. Add solvent slowly along the inside wall of the vial. Swirl gently, never shake, until fully dissolved.
Lab-handling protocol BAC Water · 0.9% benzyl alcohol The reconstitution solvent referenced above. Add to order →A 15-amino-acid research peptide.
BPC-157 is a synthetic 15-amino-acid peptide modelled on a fragment associated with gastric protein research. Published experimental literature examines BPC-157 in gastrointestinal, tendon, ligament, vascular and cell-migration models. It remains a distinct research entity from TB-500, although the two are paired in the WOLVERINE blend.
This 10 MG BPC-157 peptide is supplied as a lyophilized research vial within the NZM-Labs range of peptides. Every production lot receives independent HPLC purity analysis and mass-spectrometry identity testing, with documentation linked to the vial’s lot number. For laboratory research only.
| Compound | BPC-157 |
|---|---|
| Sequence length | 15 amino acids |
| Molecular mass | 1419.5 Da |
| Mechanism / research class | Gastric pentadecapeptide research analogue |
| Example laboratory preparation | 10 MG vial with 2 mL bacteriostatic water (0.9% benzyl alcohol) |
| Calculated concentration | 5 mg per 1.0 mL |
| Supply format | BPC-157 · 10 MG lyophilized research vial |
| Storage, lyophilized | store below 16°C for up to 24 months |
| Storage, reconstituted | refrigerate and use within 30 days |
Synthesised.
Verified.
Documented.
Backed by research.
Measured in results.
Each tag opens the cited literature behind that effect. References are linked to PubMed.
BPC-157 has the deepest single-compound citation profile in tissue-repair literature, with documented effects across tendon, ligament, gut, and vascular research models.
- Chang CH et al. J Appl Physiol. 2011;110(3):774-780. PubMed ↗
BPC-157's defining structural property is stability across the GI tract. The peptide survives gastric pH intact, making both injectable and oral research-protocol designs viable.
- Sikiric P et al. The pharmacological properties of BPC-157. J Physiol Pharmacol. 1999;50(4):1-8. PubMed ↗
Documented effects on the NO pathway and angiogenic signaling underpin BPC-157's vascular-research profile, with applications in injury-recovery and ischemia-reperfusion models.
- Seiwerth S et al. BPC-157 and blood vessels. Curr Pharm Des. 2014;20(7):1121-1125. PubMed ↗
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