BPC-157 500 mcg (60 capsules)

64,20 

10 in stock

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Research Peptide

BPC-157 500 mcg Capsules

Research-grade capsule formulation supplied in a sealed bottle. BPC-157 (Body Protection Compound 157) is a synthetic pentadecapeptide derived from a gastric protein fragment, studied in controlled laboratory settings for its relationship to tissue repair, angiogenesis, gastrointestinal cytoprotection, inflammatory signaling, and neuroprotection-focused cellular pathways.

Research Use Only
This product is intended strictly for laboratory and scientific investigation. Not for human consumption, therapeutic use, or veterinary application.

Specifications

Purity
High purity
Form
Capsules
Content
500 mcg BPC-157 per capsule
Total Quantity
60 capsules per bottle (total of 30 mg BPC-157)
Packaging
Sealed bottle
Storage
Store at room temperature, protect from light, keep dry
Molecular Formula
C62H98N16O22
Molecular Weight
~1419.5 g·mol⁻¹
Sequence
Gly-Glu-Pro-Pro-Pro-Gly-Lys-Pro-Ala-Asp-Asp-Ala-Gly-Leu-Val
CAS Number
137525-51-0

Research Overview

BPC-157 is studied as a regenerative research peptide with strong interest in tissue healing, angiogenesis, gastrointestinal integrity, and inflammatory modulation. In experimental settings, capsule-based research formulations are investigated for their relationship to cellular repair, barrier function, structural recovery, and neuroprotection-associated pathways. No therapeutic or clinical claims are made or implied.

Primary Research Areas

Tissue Repair & Wound Healing
Studied in tendon, muscle, ligament, and skin models with a focus on matrix remodeling, fibroblast activity, and targeted structural recovery pathways.
Angiogenesis & Microcirculation
Used in studies investigating new blood vessel formation, endothelial function, and microvascular stability under various experimental conditions.
Gastrointestinal Protection
Examined in models of gastric and intestinal mucosal injury, where it is associated with cytoprotective and barrier-related research outcomes.
Inflammatory & Nitric Oxide Pathways
Investigated for potential modulation of inflammatory signaling and NO-related mechanisms in preclinical models of inflammation and stress.
Neuroprotection Models
Included in CNS research exploring neuronal survival, axonal integrity, and functional recovery in models of neuronal injury or dysfunction.

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