BPC-157

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Existing research has found the following:

  • Supports Tissue Repair & Regeneration Research – Studied for its potential to accelerate healing of skin, muscle, tendon, and ligament tissue in pre-clinical models.

  • Explores Gastrointestinal & Mucosal Healing – Investigated for its influence on gut lining integrity and protection against ulcerative damage.

  • Evaluates Anti-Inflammatory & Recovery Mechanisms – Examined for reducing inflammation and supporting connective tissue restoration in experimental settings.

Description


Tissue-Repair and Regeneration Studies

  • BPC-157 (Body Protection Compound-157) is a synthetic pentadecapeptide derived from a natural gastric protein, extensively studied in cellular and pre-clinical models for its role in accelerating tissue repair, angiogenesis, and cell migration.

Wound-Healing and Musculoskeletal-Recovery Research

  • Laboratory data demonstrate enhanced fibroblast proliferation, collagen deposition, and connective-tissue regeneration, supporting its use in research involving muscle, tendon, ligament, and dermal healing.

Gastrointestinal-Mucosal Models

  • BPC-157 has been widely used in animal studies to explore gastric-mucosa protection, ulcer reduction, and intestinal-lining repair, providing insight into mechanisms of epithelial regeneration and gut-barrier integrity.

Anti-Inflammatory and Cytokine-Modulation Research

  • In non-clinical systems, BPC-157 modulates inflammatory cytokines and oxidative-stress markers, offering a valuable tool for studying systemic inflammation, immune signaling, and cellular stress responses.

Joint, Cartilage, and Tendon Integrity Studies

  • Research models show BPC-157 promotes tenocyte and chondrocyte activity, supporting investigations into joint restoration, cartilage formation, and connective-tissue metabolism.

Muscle-Regeneration and Performance Models

  • Pre-clinical evidence suggests upregulation of growth-factor expression and improved vascular supply to skeletal muscle, facilitating exploration of exercise recovery, muscle repair, and mitochondrial adaptation.

Neuroprotection and Central-Nervous-System Research

  • BPC-157 has been evaluated in rodent studies for its ability to mitigate neuronal oxidative damage, support axon regeneration, and preserve blood–brain barrier integrity, enabling research into neurorepair mechanisms.

Cardiovascular and Endothelial Function Studies

  • The peptide’s angiogenic and cytoprotective effects have been examined in vascular-injury and ischemia models, supporting exploration of endothelial health, microcirculation, and vascular remodeling.

Safety and Toxicology Findings

  • Across multiple animal and in-vitro studies, BPC-157 has shown a favorable safety profile, with no significant cytotoxicity observed under standard experimental conditions.

STORAGE DETAILS

Lyophilized BPC-157 peptide is stable at room temperature for 90 days; however, it should NOT be stored below freezing for any extended period. After reconstitution, refrigerate at ≤36°F.

Product Specifications

  • Application: Research peptide with potential in regenerative studies.

  • Appearance: Solid, white powder in 3mL glass ampule

  • Chemical Formula: C62H98N16O22

  • PubChem CID: 439302

  • CAS Number: 137525-51-0

  • Molecular Weight: 1419.56 g/mol

  • Synonyms: BPC 157, BPC-157, BPC157, Body Protective Compound 157

  • Storage: Store at ≤6°C, sealed, away from heat, light, and moisture.

  • Concentration: ≥98%

    Research Use Only (RUO). Not for human or animal use. Not for diagnostic, therapeutic, or clinical applications. No claims are made regarding wound healing, gut repair, or recovery enhancement in humans. End-user assumes responsibility for determining suitability for specific research protocols.

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