The preclinical and animal studies indicate benefits for tendon and joint injuries, says Drew Timmermans, ND, a naturopathic physician and cofounder of Regenerative Performance in Arizona
A focused peptide option for healing, gut support, and resilient recovery
- anemia (pernicious) - D51.0 - Addison-Biermer anemia (pernicious) - D51.0 - Anemia (essential) (general) (hemoglobin deficiency) (infantile) (primary) (profound) - D64.9 - Addison (-Biermer) (pernicious) - D51.0 - Biermer's (pernicious) - D51.0 - combined system disease NEC - D51.0 - congenital - P61.4 - pernicious - D51.0 - cytogenic - D51.0 - deficiency - D53.9 - vitamin B12 NOS - D51.9 - due to - intrinsic factor deficiency - D51.0 - pernicious - D51.0 - malignant (progressive) - D51.0 - progressive - D64.9 - malignant - D51.0 - pernicious - D51.0 - vitamin - B12 deficiency (dietary) pernicious - D51.0 - Biermer's (pernicious) anemia or disease - D51.0 - Congenital - See Also: condition

Product Attributes CAS # : 137525-51-0 Molecular Formula : C62H98N16O22 Sequence (AA) : GEPPPGKPADDAGLV Molecular Weight : 1419.5 g/mol PubChem CID : 9941957 Half-Life : ~4-6 hours Synonyms : Body Protection Compound-157, Gastric Pentadecapeptide BPC157, PL 14736, Bepecin, PL-10 Type : Synthetic research peptide (cytoprotective fragment) Research Focus : Recovery & Performance, Immunity & Inflammation Scientific References Emerging use of BPC-157 in orthopaedic sports medicine Animal | In vitro BPC-157 benefits, dosage, and side effects Observational | Animal | In vitro BPC 157: science-backed uses, benefits, dosage, and safety Observational | Animal | In vitro Pentadecapeptide BPC 157 enhances the growth hormone receptor expression Animal | In vitro Multifunctionality and possible medical application of the BPC 157 peptide Observational | Animal | In vitro BPC-157: miracle healing peptide or hidden danger
They are usually safe, but some people might have reactions
(8) In animal models of severe injury, it has been linked to higher levels of early growth response-1 (Egr-1), a gene that helps produce cytokines and growth factors believed to drive angiogenesis and lay down initial collagen scaffolds