BPC-157 acetate is a lyophilized pentadecapeptide research material commonly evaluated in laboratory studies involving peptide characterization, molecular interactions, and biological signaling pathways. Please visit the product page for BPC-157 Arginate (Pentadeca Arginate) to view more details about our 500mcg dry-fill capsules.
Price range: $38.00 through $68.00
Price range: $26.60 through $47.60
| Quantity | Discounted Price |
|---|---|
| 4 - 6 | $36.48 |
| 7 - 9 | $35.72 |
| 10 + | $34.96 |
BPC-157 (known chemically as Body Protection Compound-157, PL 14736, PL-10, or BeMatrix-157) is a synthetic 15-amino-acid pentadecapeptide (Gly-Glu-Pro-Pro-Pro-Gly-Lys-Pro-Ala-Asp-Asp-Ala-Gly-Leu-Val) derived from a biologically active fragment of human gastric cytoprotective protein. Structurally stabilized to resist proteolytic enzymatic degradation, BPC-157 serves as a benchmark reference peptide in extracellular matrix (ECM) research.
Operating across multiple cell-signaling pathways, BPC-157 (Pentadecapeptide) promotes microvascular endothelial cell proliferation by upregulating vascular endothelial growth factor receptor 2 (VEGFR2) and internalizing VEGFR2/Akt signaling. BPC-157 accelerates tenocyte and fibroblast migration through the focal adhesion kinase (FAK) and paxillin phosphorylation cascade, facilitating organized type I collagen matrix deposition and tissue architecture restoration.
Batch-verified for high analytical purity at Modern Aminos, BPC-157 is supplied in 5MG and 10MG formats in 2R glass vials. Researchers evaluating soft tissue re-vascularization, tendon/ligament bioenergetics, and angiogenesis utilize BPC-157 alongside complementary reference standards, such as Thymosin Beta-4, KPV, and GLOW.
| Compound Name | BPC-157 (Body Protection Compound-157) |
|---|---|
| Available Formats Offered | • 5MG Lyophilized Dry Powder in 2R Glass Vial • 10MG Lyophilized Dry Powder in 2R Glass Vial |
| Chemical Structure | Synthetic 15-Amino-Acid Gastric-Derived Pentadecapeptide |
| Peptide Sequence | Gly-Glu-Pro-Pro-Pro-Gly-Lys-Pro-Ala-Asp-Asp-Ala-Gly-Leu-Val |
| Synonyms / Alt Names | BPC-157, PL 14736, PL-10, Pentadecapeptide BPC 157, BeMatrix-157 |
| CAS Number | 137525-51-0 |
| Chemical Formula | C62H98N16O22 |
| Molecular Weight | 1419.53 g/mol |
| IUPAC Name | L-valine, L-alpha-glutamyl-L-prolyl-L-prolyl-L-prolylglycyl-L-lysyl-L-prolyl-L-alanyl-L-alpha-aspartyl-L-alpha-aspartyl-L-alanylglycyl-L-leucyl- |
| InChIKey | InChIKey=OIRCOZZYDOEUBO-UHFFFAOYSA-N |
| SMILES Code | Protected Peptide Sequence Matrix |
The biochemical pathways and cellular targets of BPC-157 (Pentadecapeptide) in laboratory research include:
When evaluating published scientific literature and bioenergetic monographs for BPC-157:
To evaluate peptide mechanisms, structural targets, and formulation synergy, researchers compare BPC-157 against alternative reference standards available at Modern Aminos:
| Compound / Reference | Chemical Structure & Class | Core Mechanism of Action | Primary Research Focus |
|---|---|---|---|
| BPC-157 (Pentadecapeptide) | 15-Amino-Acid Gastric Pentadecapeptide | Upregulates VEGFR2 angiogenesis, stimulates FAK/paxillin tenocyte migration, and modulates NO | Fibroblast matrix remodeling, microvascular network formation, localized structural protein deposition, and mucosal barrier resilience. |
| Thymosin Beta-4 | Thymosin β4 Active Domain Fragment | Sequestration of monomeric G-actin to drive rapid cell motility, migration, and tissue re-epithelialization | Cytoskeletal remodeling, actin-mediated cell motility, and muscle fiber re-vascularization |
| Copper Tripeptdie-1 | Copper-Chelated Tripeptide (Gly-His-Lys) | Stimulates pro-collagen, elastin, and decorin gene transcription; activates SOD1 antioxidant defense | Fibroblast modulation, epithelial barrier homeostasis, fibrotic pathway attenuation, and broad-spectrum extracellular matrix (ECM) synthesis. |
| BPC-157 + Thymosin Beta-4 | BPC-157 + Thymosin Beta-4 Blend | Coupled VEGFR2 angiogenesis (BPC) with G-actin cytoskeletal migration (TB-500) | Synergistic multi-pathway connective tissue remodeling, combining endothelial tubulogenesis with rapid cellular migration. |
Yes, Modern Aminos is a highly trusted vendor for high-purity research chemicals and reference peptides. Every batch of BPC-157 (across both 5MG and 10MG formats) undergoes strict third-party analytical testing (including HPLC and Mass Spectrometry) to verify minimum 98%+ chemical purity, exact 15-amino-acid sequence fidelity, correct molecular weight (1419.53 g/mol), and complete absence of heavy metals or synthesis impurities.
BPC-157 is a synthetic 15-amino-acid pentadecapeptide derived from the sequence of human gastric juice cytoprotective protein. It is engineered to maintain high structural stability in enzymatic and acidic environments.
BPC-157 increases VEGFR2 expression and activates Akt/eNOS signaling pathways, stimulating endothelial cell proliferation, migration, and the rapid formation of organized microvascular capillary networks.
Modern Aminos supplies analytical-grade BPC-157 in two solid formats: 5MG Lyophilized Dry Powder in a 2R glass vial and 10MG Lyophilized Dry Powder in a 2R glass vial, catering to both low-volume microplate assays and larger multi-well screening protocols.
BPC-157 activates the FAK/paxillin pathway in fibroblasts and tenocytes, accelerating cell migration toward injured matrix zones and upregulating Growth Hormone Receptor (GHR) expression to promote organized type I collagen deposition.
BPC-157 operates primarily via VEGFR2 angiogenesis and FAK/paxillin tenocyte outgrowth. TB-500 functions through G-actin monomer sequestration to drive rapid cytoskeletal motility and wound re-epithelialization.
Modern Aminos utilizes High-Performance Liquid Chromatography (HPLC) to confirm active chemical purity exceeding 98% and Mass Spectrometry (MS) to verify exact molecular weight (1419.53 g/mol) and sequence structure prior to batch release.
Lyophilized BPC-157 glass vials should be stored tightly sealed in a cool, dry environment (15°C to 25°C) or refrigerated for long-term preservation. Protect from direct light, heat exposure, and atmospheric moisture to maintain solid-state peptide stability.
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