Launching September 2026For in-vitro laboratory research only — not for human or veterinary use

Repair & Recovery

BPC-157

Body Protection Compound 157 · PL 14736

A synthetic 15-amino-acid sequence derived from human gastric juice protein BPC, studied extensively in tissue repair and angiogenesis models.

Specification

Also known as
Body Protection Compound 157 · PL 14736
CAS number
137525-51-0
Molecular formula
C62H98N16O22
Molecular weight
~1,419.5 Da
Sequence
Gly-Glu-Pro-Pro-Pro-Gly-Lys-Pro-Ala-Asp-Asp-Ala-Gly-Leu-Val
Release specification
≥99%
Presentations
5 mg vial · 10 mg vial
Form
Lyophilised powder
Intended use
In-vitro laboratory research only

What BPC-157 is

BPC-157 is a synthetic pentadecapeptide — fifteen amino acids — corresponding to a partial sequence of Body Protection Compound, a protein isolated from human gastric juice. Its sequence is Gly-Glu-Pro-Pro-Pro-Gly-Lys-Pro-Ala-Asp-Asp-Ala-Gly-Leu-Val, notable for a proline-rich stretch that contributes to its conformational rigidity and to its reported stability.

That stability is the compound's most distinctive physical property. Short peptides are generally fragile in proteolytic environments; BPC-157 is reported to remain intact in human gastric juice, which is unusual enough to have driven much of the early interest in it.

Molecular profile

PropertyValue
SequenceGEPPPGKPADDAGLV
Length15 amino acids
CAS number137525-51-0
Molecular formulaC62H98N16O22
Molecular weight~1,419.5 Da
Common salt formAcetate
AppearanceWhite lyophilised powder

Research context

The BPC-157 literature is largely preclinical and concentrated in tissue repair models. Reported lines of investigation include:

  • Angiogenesis — effects on endothelial cell migration and tube formation in vitro, with reported involvement of VEGF receptor 2 signalling.
  • Tendon and ligament models — fibroblast migration, adhesion and survival in cultured tendon explants.
  • Gastrointestinal models — mucosal integrity in experimental injury.
  • Nitric oxide pathway interaction — a recurring theme across the literature, with reported modulation of NO system activity.

The evidence base is dominated by rodent work from a relatively small number of research groups, and human clinical data is limited. That is a genuine characterisation of the literature rather than a caveat added for form.

Supplied for in-vitro laboratory research only. No therapeutic claim is made and no dosing or administration guidance is provided.

Analytical notes

At 15 residues BPC-157 is a comparatively straightforward peptide to synthesise and to characterise, which means the analytical questions are about the manufacturing rather than about the method.

Deletion sequences are the impurity class of interest. A synthesis that fails to couple one residue produces a 14-mer differing by a single amino acid — close enough in retention time that a lazily integrated chromatogram can absorb it into the main peak, and different enough in mass that mass spectrometry catches it immediately.

Salt form changes what the label means. Acetate and arginate salts of the same peptide carry different counter-ion masses, so 10 mg of gross material is a different quantity of peptide depending on which you have. The certificate should state the salt form and, ideally, the net peptide content — the difference between net peptide content and purity is where most concentration errors originate.

Handling and storage

Store sealed at −20 °C, protected from light and moisture. Allow the vial to reach room temperature before opening. BPC-157 is more forgiving to reconstitute than the lipidated metabolic peptides, but the same practice applies: run diluent down the vial wall, swirl rather than shake, and store the resulting solution at 2–8 °C protected from light.

What we supply

Released against a ≥99% purity specification, with in-house HPLC and mass spectrometry on every batch and a batch-specific Certificate of Analysis recording the salt form as well as the purity. Select batches additionally receive independent third-party purity verification.

Frequently asked questions

What is BPC-157 studied for?
Published research examines BPC-157 in tissue repair models — tendon, ligament, muscle and gastrointestinal mucosa — with reported effects on fibroblast migration, angiogenesis and growth factor receptor expression. The large majority of this literature is preclinical, predominantly rodent, and Tested Peptides supplies the compound for in-vitro laboratory research only.
Is BPC-157 a stable peptide?
Unusually so for its size. It is reported to be stable in human gastric juice, which is atypical for a short peptide and is one reason it has attracted research interest. As a lyophilised powder it is robust at appropriate storage temperatures, and it is less prone to interfacial aggregation than the fatty-acid-conjugated metabolic peptides.
What is the difference between BPC-157 and its arginate salt form?
BPC-157 is commonly supplied as an acetate salt. Some material is supplied as an arginate salt, which alters the counter-ion and therefore the gross vial mass for a given quantity of peptide, without changing the peptide itself. The Certificate of Analysis should state the salt form, because it changes what the label mass means.
How is the purity of BPC-157 verified?
Every batch is analysed in-house by high-performance liquid chromatography for purity and confirmed by mass spectrometry for identity, and ships with a batch-specific Certificate of Analysis. Select batches additionally undergo independent purity verification by a third-party laboratory.
When will BPC-157 be available to order?
Ordering opens in September 2026. Current batches are with an independent third-party laboratory for purity verification and are not released for sale until that analysis is returned. Join the waitlist to be emailed once when ordering opens.
Do you provide dosing guidance for BPC-157?
No. These compounds are supplied for in-vitro laboratory research, so no dosing, protocol or administration guidance is provided. The research library covers analytical method, reconstitution arithmetic and storage handling only.

Further reading

Related compounds