BPC-157
Body Protection Compound
CAS: 137525-51-0
Formula: C62H98N16O22
M.W.: 1419.556 g/mol
Purity: 99%+
Ref No.:BOC-0005VI
Ref No.:BOC-0010VI
For Research Use Only (RUO)
Not for human or veterinary use.
BPC-157
Category
Regenerative Research
CAS Number
137525-51-0
Form Factor
Lyophilized Powder
In stock, ready to ship
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Products are shipped in lyophilized powder form.
BPC-157 is a synthetic pentadecapeptide sequence derived from a partial sequence found in gastric juice protein. It is one of the most widely researched peptides in the compound library used by laboratories studying tissue-related biological pathways.
Description
BPC-157 is a synthetic pentadecapeptide sequence derived from a partial sequence found in gastric juice protein. It is one of the most widely researched peptides in the compound library used by laboratories studying tissue-related biological pathways.Chemical Information
CAS Number
137525-51-0
Secondary CAS
1356647-49-2
Purity
99%+ HPLC Verified
Molecular Formula
C62H98N16O22
Molar Mass
1419.5347 g/mol
Form Factor
Lyophilized Powder
Synonyms
Research Applications
- Gastroenterology Research: BPC-157 is investigated in preclinical gastrointestinal models for its potential influence on mucosal cytoprotection, gastric lesion repair, NSAID-associated tissue injury, and intestinal barrier function. Mechanistic studies examine its interactions with nitric oxide signaling, prostaglandin pathways, and gastrointestinal dopamine and serotonin turnover, including their relevance to experimental models of intestinal inflammation and gastrointestinal dysfunction.
- Musculoskeletal Research: BPC-157 is evaluated in animal models of tendon, ligament, skeletal muscle, and bone repair. Reported research endpoints include Achilles tendon regeneration, quadriceps muscle recovery, and fracture consolidation. Proposed mechanisms include fibroblast migration and proliferation, modulation of growth-factor signaling—including EGF and VEGF—and changes in reticulin and collagen-fiber formation at injury sites.
- Neuroscience Research: BPC-157 is studied in experimental models involving dopaminergic, serotonergic, and GABAergic signaling. Investigations assess its potential effects on cuprizone-associated demyelination, traumatic brain injury, neurotoxin-induced dopaminergic disruption, neurotransmitter regulation, and peripheral or central nerve regeneration.
- Tissue-Regeneration Research: BPC-157 is examined for its influence on angiogenesis and tissue-remodeling processes. Research endpoints include VEGF-associated signaling, neovascularization, granulation-tissue development, and collagen deposition. Diabetic and corticosteroid-impaired models are used to characterize these mechanisms under conditions of disrupted tissue repair.
- Toxicology Research: BPC-157 is investigated in experimental toxicology models involving NSAID-associated gastrointestinal injury, ethanol-associated hepatic damage, and potassium-related systemic toxicity. Mechanistic research focuses on nitric oxide signaling, vascular homeostasis, cellular-membrane stability, and tissue responses to chemically induced injury.
Storage Conditions
Unreconstituted
Store at -20°C to 4°C (freezer or refrigerator). Stable for 24+ months.
Reconstituted
Refrigerate at 2–8°C. Use within 30 days for optimal stability.
Avoid
Repeated freeze-thaw cycles, direct sunlight, and temperatures above 25°C.
Safety & Compliance
- Wear nitrile gloves and safety goggles when handling research compounds.
- Work in a clean, controlled environment (laminar flow hood recommended).
- Dispose of sharps and used materials in approved biohazard containers.
- This product is for laboratory research use only (RUO) — not for human or veterinary use.
Quality Assurance Standards
Each production lot is subjected to rigorous analytical evaluation to meet pharmaceutical-grade specifications. Full testing results and procedural documentation are furnished through the accompanying Certificate of Analysis (COA) with every shipment.
Certificate of Analysis
Latest COA for BPC-157 — independently tested via HPLC and Mass Spectrometry.
Testing Methodology
Every batch undergoes a multi-stage analytical pipeline before release. Results are compiled into the Certificate of Analysis (COA) included with each order.
- • HPLC — High-Performance Liquid Chromatography confirms peptide purity ≥98%.
- • Mass Spectrometry — Validates molecular identity and correct sequence.
- • Endotoxin (LAL) — Limulus Amebocyte Lysate assay ensures endotoxin levels are within safe limits.
- • Sterility — Microbial contamination testing per USP standards.
Learn More About Peptides
Explore our research library covering purity, synthesis, storage, solubility, and more.
Research Database
Browse peer-reviewed studies, clinical trials, and scientific sources behind our peptide resources.
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Description
BPC-157 is a synthetic pentadecapeptide sequence derived from a partial sequence found in gastric juice protein. It is one of the most widely researched peptides in the compound library used by laboratories studying tissue-related biological pathways.Chemical Information
CAS Number
137525-51-0
Secondary CAS
1356647-49-2
Purity
99%+ HPLC Verified
Molecular Formula
C62H98N16O22
Molar Mass
1419.5347 g/mol
Form Factor
Lyophilized Powder
Synonyms
Research Applications
- Gastroenterology Research: BPC-157 is investigated in preclinical gastrointestinal models for its potential influence on mucosal cytoprotection, gastric lesion repair, NSAID-associated tissue injury, and intestinal barrier function. Mechanistic studies examine its interactions with nitric oxide signaling, prostaglandin pathways, and gastrointestinal dopamine and serotonin turnover, including their relevance to experimental models of intestinal inflammation and gastrointestinal dysfunction.
- Musculoskeletal Research: BPC-157 is evaluated in animal models of tendon, ligament, skeletal muscle, and bone repair. Reported research endpoints include Achilles tendon regeneration, quadriceps muscle recovery, and fracture consolidation. Proposed mechanisms include fibroblast migration and proliferation, modulation of growth-factor signaling—including EGF and VEGF—and changes in reticulin and collagen-fiber formation at injury sites.
- Neuroscience Research: BPC-157 is studied in experimental models involving dopaminergic, serotonergic, and GABAergic signaling. Investigations assess its potential effects on cuprizone-associated demyelination, traumatic brain injury, neurotoxin-induced dopaminergic disruption, neurotransmitter regulation, and peripheral or central nerve regeneration.
- Tissue-Regeneration Research: BPC-157 is examined for its influence on angiogenesis and tissue-remodeling processes. Research endpoints include VEGF-associated signaling, neovascularization, granulation-tissue development, and collagen deposition. Diabetic and corticosteroid-impaired models are used to characterize these mechanisms under conditions of disrupted tissue repair.
- Toxicology Research: BPC-157 is investigated in experimental toxicology models involving NSAID-associated gastrointestinal injury, ethanol-associated hepatic damage, and potassium-related systemic toxicity. Mechanistic research focuses on nitric oxide signaling, vascular homeostasis, cellular-membrane stability, and tissue responses to chemically induced injury.
Storage Conditions
Unreconstituted
Store at -20°C to 4°C (freezer or refrigerator). Stable for 24+ months.
Reconstituted
Refrigerate at 2–8°C. Use within 30 days for optimal stability.
Avoid
Repeated freeze-thaw cycles, direct sunlight, and temperatures above 25°C.
Safety & Compliance
- Wear nitrile gloves and safety goggles when handling research compounds.
- Work in a clean, controlled environment (laminar flow hood recommended).
- Dispose of sharps and used materials in approved biohazard containers.
- This product is for laboratory research use only (RUO) — not for human or veterinary use.
Quality Assurance Standards
Each production lot is subjected to rigorous analytical evaluation to meet pharmaceutical-grade specifications. Full testing results and procedural documentation are furnished through the accompanying Certificate of Analysis (COA) with every shipment.
Certificate of Analysis
Latest COA for BPC-157 — independently tested via HPLC and Mass Spectrometry.
Testing Methodology
Every batch undergoes a multi-stage analytical pipeline before release. Results are compiled into the Certificate of Analysis (COA) included with each order.
- • HPLC — High-Performance Liquid Chromatography confirms peptide purity ≥98%.
- • Mass Spectrometry — Validates molecular identity and correct sequence.
- • Endotoxin (LAL) — Limulus Amebocyte Lysate assay ensures endotoxin levels are within safe limits.
- • Sterility — Microbial contamination testing per USP standards.
Learn More About Peptides
Explore our research library covering purity, synthesis, storage, solubility, and more.
Research Database
Browse peer-reviewed studies, clinical trials, and scientific sources behind our peptide resources.