Skip to content
Research Use OnlyThird-Party Tested in the USABatch-Verified COAsShips from the United StatesPrecision · Purity · PerformanceResearch Use OnlyThird-Party Tested in the USABatch-Verified COAsShips from the United StatesPrecision · Purity · PerformanceResearch Use OnlyThird-Party Tested in the USABatch-Verified COAsShips from the United StatesPrecision · Purity · Performance

Research use only·All materials are supplied to qualified research purchasers for in-vitro laboratory use. Not for human or veterinary use. Research Use Agreement

Tissue Signaling

BPC-157 — molecular reference

BPC-157 is a stable synthetic pentadecapeptide derived from a partial sequence of gastric juice protein BPC. It is widely used in cultured-cell migration (scratch/wound) assays, fibroblast and tendon-derived cell models, and studies of the nitric oxide and VEGF signaling axes. Its stability in acidic buffers makes it a convenient tool compound for extended in-vitro incubations. Supplied as a sterile lyophilized powder. Research use only.

Molecular data

Compound name
BPC-157 (Body Protection Compound-157)
Research classification
Single Peptide
Molecular formula
C62H98N16O22
Average molecular mass
1420 g/mol(calculated from molecular formula)
Sequence
GEPPPGKPADDAGLV
Research pathway
Tissue Signaling
Physical form
Lyophilized powder
Storage & handling
Store lyophilized at -20°C.
Available presentations
10mg
Current status
In Stock

Fields with no verifiable source are omitted rather than estimated. Where an average mass is marked as calculated, it is derived arithmetically from the molecular formula using IUPAC standard atomic weights, not measured.

Documented assay contexts

Contexts in which this compound is used as a reference material in published in-vitro work. These describe laboratory usage, not effects in any organism.

  • Pentadecapeptide signaling
  • Cell migration and scratch assays
  • Nitric oxide pathway modeling

Lot documentation

LotPresentationPurityCertificate
PH260801010mg99.68%View certificate

Related Pure Helix research

Other tissue signaling compounds