Description
BPC-157 is a synthetic peptide derived from a naturally occurring protein found in the stomach. It is known for its powerful regenerative properties. Specifically, it promotes rapid healing of tissues, including muscles, tendons, ligaments, and the gut. It acts by enhancing cell migration, accelerating wound healing, and reducing inflammation. BPC-157 stabilizes the blood vessels, encourages angiogenesis (the formation of new blood vessels), and modulates growth factors, thereby creating an environment that supports soft tissue repair. It also plays a role in protecting the gut lining, reducing leaky gut and supporting digestive health. Beyond that, it helps modulate inflammation by balancing pro- and anti-inflammatory pathways, and it may enhance overall recovery after injury or strain.
BPC-157 Research Details
BPC-157 is a 15-amino-acid peptide with extensive preclinical literature in gastric, tendon/ligament, muscle, vascular, and wound-healing models. Mechanistic discussions include angiogenesis, VEGF/NO system interactions, cell migration, and inflammatory modulation.
99%+ target purity or lot-specific COA value
Gly-Glu-Pro-Pro-Pro-Gly-Lys-Pro-Ala-Asp-Asp-Ala-Gly-Leu-Val
Lyophilized research material unless otherwise specified by COA
Research use only
Research Background
Synthetic pentadecapeptide derived from body-protection-compound research, studied for wound models, angiogenesis, nitric-oxide interactions, and tissue-repair signaling. Key OneBio research contexts include wound-healing models, tendon/ligament research, angiogenesis assays, gastrointestinal barrier studies, and inflammatory signaling.
Specifications
| Compound | BPC-157 |
| SKU / Product | bpc-157-2 |
| Molecular Weight | ~1419.5 g/mol |
| Formula / Classification | C62H98N16O22 |
| Database / Identity Note | PubChem CID 9941957 |
| Storage | -4°F long-term; 35-46°F short-term refrigerated; 39°F after reconstitution for up to 30 days when appropriate for the research protocol |
Quality Verification
Each batch should be reviewed against its Certificate of Analysis, including identity confirmation, purity method, mass/sequence or component confirmation, appearance, and lot-specific handling notes. Blend products should be checked against component-ratio documentation where available.
Laboratory Preparation
Prepare only inside a qualified laboratory using validated solvent choice, concentration, sterility, and storage protocols. For lyophilized peptides, use sterile deionized water or bacteriostatic water when appropriate for the research protocol, mix gently, maintain cold-chain handling, and avoid repeated freeze-thaw cycles.
Product-Specific Q&A
What is BPC-157 used for in research?
BPC-157 is used as a research material for wound-healing models, tendon/ligament research, angiogenesis assays, gastrointestinal barrier studies, and inflammatory signaling. It is not offered for diagnostic, therapeutic, clinical, veterinary, or human-use applications.
What mechanism is most relevant for BPC-157?
Synthetic pentadecapeptide derived from body-protection-compound research, studied for wound models, angiogenesis, nitric-oxide interactions, and tissue-repair signaling.
How should BPC-157 identity and purity be verified?
Use the lot-specific Certificate of Analysis to confirm identity, purity, mass/sequence or component profile, and any method-specific data such as LC-MS/HPLC. Technical values on this page are research references and should be checked against the delivered lot.
What storage conditions apply to BPC-157?
-4°F long-term; 35-46°F short-term refrigerated; 39°F after reconstitution for up to 30 days when appropriate for the research protocol. Keep sealed, dry, protected from light, and avoid repeated freeze-thaw cycles after preparation.
References
- PMID 40573323: Stable Gastric Pentadecapeptide BPC 157 as a Therapy and Safety Key: A Special Beneficial Pleiotropic Effect Controlling and Modulating Angiogenesis and the NO-System. Pharmaceuticals (Basel, Switzerland) 2025.
- PMID 41155565: BPC 157 Therapy: Targeting Angiogenesis and Nitric Oxide's Cytotoxic and Damaging Actions, but Maintaining, Promoting, or Recovering Their Essential Protective Functions. Comment on Józwiak et al. Multifunctionality and Possible Medical Application of the BPC 157 Peptide-Literature and Patent Review. Pharmaceuticals 2025, 18, 185. Pharmaceuticals (Basel, Switzerland) 2025.

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