




BPC-157
BPC-157
The most-studied "body protection compound" in tissue research — a 15-amino-acid sequence derived from human gastric juice. Animal studies have demonstrated 50-72% acceleration in tendon and ligament healing, with parallel effects on angiogenesis and gut lining repair.
The most-studied "body protection compound" in tissue research — a 15-amino-acid sequence derived from human gastric juice. Animal studies have demonstrated 50-72% acceleration in tendon and ligament healing, with parallel effects on angiogenesis and gut lining repair.
$49.00
$49.00
$49.00
Research use only
For scientific research, and in-vitro testing only. Not for human or veterinary use.
Lab Reports & COA's
Lab Reports & COA's
Purity
Passed
How should I store this peptide?
What purity are your peptides?
Research Use Only [Disclaimer]
Fast Dispatch
Orders ship within 24-48 hours
Fast Dispatch
Orders ship within 24-48 hours
Discreet Shipping
Plain packaging, no branding
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The Science
The Science
Overview
Lab Reports
Storage
Compound Data
What it is
A 15-amino-acid sequence derived from a protective protein found in human gastric juice — the most-studied "body protection compound" in tissue research.
Why it's studied
BPC-157 upregulates VEGFR2, the receptor that drives new blood vessel formation, and modulates the nitric oxide system at injury sites. Two decades of animal research have made it one of the most consistently reproducible compounds in regenerative science.
Key research findings
50-72% acceleration in tendon healing rates (Sikiric et al., rat Achilles transection model)
Significant gut lining repair documented in inflammatory bowel models
Demonstrated angiogenesis via VEGFR2 upregulation across multiple tissue types
Overview
Lab Reports
Storage
Compound Data
What it is
A 15-amino-acid sequence derived from a protective protein found in human gastric juice — the most-studied "body protection compound" in tissue research.
Why it's studied
BPC-157 upregulates VEGFR2, the receptor that drives new blood vessel formation, and modulates the nitric oxide system at injury sites. Two decades of animal research have made it one of the most consistently reproducible compounds in regenerative science.
Key research findings
50-72% acceleration in tendon healing rates (Sikiric et al., rat Achilles transection model)
Significant gut lining repair documented in inflammatory bowel models
Demonstrated angiogenesis via VEGFR2 upregulation across multiple tissue types
PEPTIDES
PEPTIDES
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FAQ
FAQ