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USA Made ≥99% Purity Standard Batch-Specific COAs Next Business Day Shipping Free Shipping on Orders Over $149
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BPC-157 [10mg]

$89.99

Research-use-only peptide supplied as lyophilized powder. Intended strictly for laboratory research use only. Not for human or animal consumption.

Availability: In stock (can be backordered)

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Research Use Only Laboratory materials
Batch-Specific COA Documentation available
≥99% Purity Quality standard
Made in the USA Domestic manufacturing
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For laboratory research use only. Not for human or animal consumption.

Product Information

Product Details

This product is supplied strictly for laboratory research use only. Batch documentation, product imagery, and supporting verification materials may be included within the product gallery for review.

Lyophilized Peptides

These peptides are freeze-dried, a process that helps preserve material integrity during storage. No fillers are used in this process.

Pinnacle Peptide Labs provides clearly labeled research materials with a focus on purity standards, professional fulfillment, and transparent product presentation.

BPC-157 10mg is a synthetic research peptide studied in laboratory and preclinical models involving cell signaling, angiogenesis, fibroblast activity, nitric oxide pathways, and tissue-response mechanisms.

BPC-157 is a 15-amino-acid peptide with the sequence GEPPPGKPADDAGLV. It has been investigated across a range of experimental models, making it a widely studied compound in peptide research.

BPC-157 10mg is supplied strictly for laboratory research and analytical investigation. It is not intended for human or animal consumption, clinical use, diagnostic use, therapeutic use, or veterinary use.

Research Specifications

Product Name BPC-157
Vial Quantity 10mg
Form Lyophilized Powder
Research Classification Synthetic Research Peptide
Peptide Length 15 Amino Acids
Sequence GEPPPGKPADDAGLV
Molecular Formula C₆₂H₉₈N₁₆O₂₂
Molecular Weight 1,419.5 g/mol
Intended Use Laboratory Research Only

BPC-157 Research

BPC-157 has been investigated extensively in preclinical and laboratory research models examining cellular responses to experimental stress and injury.

Published research has explored its interaction with multiple biochemical systems rather than identifying a single receptor as its exclusive molecular target. This has led researchers to examine BPC-157 across several areas of cellular and molecular biology.

Experimental findings involving BPC-157 remain predominantly preclinical and should not be interpreted as demonstrating established clinical effects.

Angiogenesis & Cellular Signaling Research

One important area of BPC-157 research involves angiogenesis, the biological process through which new blood vessels develop from existing vasculature.

Experimental studies have examined BPC-157 in relation to endothelial-cell behavior and signaling pathways associated with vascular development. Research has also explored interactions involving VEGF-related signaling and other mechanisms associated with cellular migration and vascular responses.

These models allow researchers to investigate how peptide-mediated signaling may influence cellular processes involved in vascular biology.

Fibroblast & Cellular Migration Research

BPC-157 has also been investigated in experimental models involving fibroblasts, a class of cells that plays an important role in extracellular-matrix biology and cellular responses to tissue disruption.

Laboratory studies have examined fibroblast migration, cellular proliferation, and related signaling behavior in the presence of BPC-157.

This research provides a framework for studying how BPC-157 may interact with molecular processes involved in cell migration, extracellular-matrix organization, and cellular response mechanisms under controlled experimental conditions.

Nitric Oxide Pathway Research

Another area of investigation involves the relationship between BPC-157 and the nitric oxide (NO) system.

Nitric oxide functions as an important signaling molecule across numerous biological processes. Preclinical research has examined BPC-157 in experimental models involving nitric oxide synthase activity and related vascular signaling pathways.

The interaction between BPC-157 and nitric-oxide-associated mechanisms continues to be an area of experimental investigation.

Molecular Research Profile

BPC-157 is a 15-residue synthetic peptide with the amino-acid sequence:

GEPPPGKPADDAGLV

The free peptide has a molecular formula of C₆₂H₉₈N₁₆O₂₂ and a molecular weight of approximately 1,419.5 g/mol.

BPC-157 may be supplied or referenced in different chemical forms, including salt forms. Because the presence of a counterion can affect molecular weight and other chemical identifiers, molecular specifications should always be interpreted in relation to the specific form identified by applicable batch documentation.

Lyophilized Research Peptide

BPC-157 10mg is supplied in lyophilized powder form for laboratory research.

Lyophilization removes water from the material under controlled conditions, producing a stable dry research format suitable for storage and subsequent laboratory preparation according to established research protocols.

Batch-specific analytical documentation may be available to provide additional information regarding the identity and purity of the research material.

Research Use Only

BPC-157 10mg is intended strictly for laboratory research purposes only.

This product is not intended for human consumption, animal consumption, clinical use, diagnostic use, therapeutic use, veterinary use, or for the treatment, cure, mitigation, or prevention of any disease.

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