
1 / 5Inflammatory Pathway Peptides · Gastrointestinal & Epithelial Research
$240.00$120.00Save 50%
BPC-157 is a synthetic 15-amino-acid peptide (a pentadecapeptide) based on a partial sequence identified in human gastric juice, and it appears in published literature examining angiogenic signaling, fibroblast migration and growth factor pathway activity in cell culture and preclinical models.
Real Peptides supplies BPC-157 in capsule form as a 100-count bottle. Each production lot is assayed by an independent analytical laboratory, and the certificate for the current lot is published on the lab results pages before purchase, so identity and purity data can be reviewed against the lot number on the bottle. Orders are fulfilled from facilities in Florida and California and dispatched within 24 hours of processing. This material is sold strictly for laboratory research use and is not a drug, supplement or cosmetic, and is not intended for human or animal use.
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$120.00
Out of stock
Bundle & saveBuild Your PackMix & match your pack. The more you add, the more you save — up to 20% off.BPC-157 Capsules — 100 count · 500mcg (100 capsules)
$120.00$240.00
For Research Use Only. Not for human or veterinary use. Not for use in diagnostic or therapeutic procedures. Not for food, drug, or cosmetic use.
99% Pure | 100 Capsules | Finished in the USA
BPC-157 is a synthetic 15-amino-acid peptide derived from a sequence identified in human gastric juice. It appears in published research examining angiogenic signaling, fibroblast migration, and growth factor pathway activity in cell culture and preclinical models.
Also available as lyophilized peptide in vial format for studies requiring controlled solution concentrations.
For Research Use Only. Not for human or veterinary use.

BPC-157 is a synthetic 15-amino-acid peptide derived from a sequence identified in human gastric juice. Its stability under gastric conditions is a frequently cited reason for its use as a research reagent.
Published research examines BPC-157 in cell culture and preclinical model systems, with focus on angiogenic signaling, fibroblast migration, and growth factor pathway activity.


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