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BPC-157 10mg

$90.00

BPC-157 is a penta-decapeptide composed of 15 amino acids, derived from the body protection compound (BPC) found in human gastric juice. Studies have shown its potential in accelerating wound healing, protecting organs, and supporting digestive health, making it a promising tool for research into tissue repair and gastrointestinal conditions.

Important Information About This Research Product:

  • Your vials are not empty; the product is at the bottom of the vial.
  • All peptides are provided in lyophilized (freeze-dried) powder form and must be reconstituted with bacteriostatic water (not provided).
  • Store in a cool, dry, dark place, away from UV rays. For best preservation, store at ≤ 4°C.
  • This product is intended for laboratory and research use only. No instructions on reconstitution or dosing can be provided.

Storage

Store in a cool, dry, and dark place away from UV rays. For optimal preservation, store at 4°C.

Molecular Weight

1419.556 g/mol

Molecular Formula

C62H98N15O22

CAS #

137525-51-0

Synonyms

Body Protection Compound 15

Sequence

Gly-Glu-Pro-Pro-Pro-Gly-Lys-Pro-Ala-Asp-Asp-Ala-Gly-Leu-Val

Appearance

Lyophilized Powder

Description

BPC-157 is a penta-decapeptide consisting of 15 amino acids, and is a partial sequence of the body protection compound (BPC) found in human gastric juice. Research on animal models has demonstrated BPC-157’s ability to enhance the healing of various wounds, including muscle, tendon, and ligament injuries. It has also been shown to protect organs and prevent gastric ulcers.

BPC-157 works systemically in the digestive tract, showing promise in addressing conditions like leaky gut, IBS, gastrointestinal cramps, and Crohn’s disease. Additionally, BPC-157 has demonstrated analgesic properties, and studies suggest it can accelerate the healing of skin burns by enhancing blood flow to damaged tissues. The peptide significantly boosts reticulin and collagen formation, stimulates angiogenesis, and supports macrophage and fibroblast activity, making it a valuable potential tool for wound healing research.