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For research use only

BPC-157 10 mg research peptide vial

BPC-157

Synthetic Pentadecapeptide for Tissue Remodeling & Cellular Migration Research

  • Third-party tested
  • COA per batch
  • Lyophilized research material

Description

BPC-157 is a synthetic 15-amino-acid peptide investigated primarily in experimental models involving tissue response, cellular migration, angiogenic signaling, and gastrointestinal biology. Research has examined its interactions with pathways associated with vascular regulation and tissue remodeling.

Vial strength

$80.00/ 10 mg · USD

Volume pricing

Applied automatically in the cart

Per-unit price by quantity. The row in force is marked.
QuantityPer unitYou save
3–4 units$76.00−5%
5–9 units$72.00−10%
10+ units$68.00−15%

Add 2 more to save 5% on every unit.

Quantity
1

SKU VP-BPC-10

Certificate published per batch

Awaiting client documentation

Purity stated per lot

Figures are reported against the lot they belong to, never as a brand average. The analysis for a batch is published on that batch’s certificate.

  • Certificate published for each batch
  • Third-party tested
  • Orders over $200 ship free
  • Supplied for laboratory research use only

Complete your protocol

Lyophilized vials are supplied dry. Add the accompanying laboratory supplies in one step.

  • BPC-157This item

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Supplied as laboratory materials for research use only.

Scientific overview

BPC-157, commonly described as a gastric pentadecapeptide, has been evaluated primarily through laboratory and animal research. Experimental studies have investigated its relationship with vascular endothelial growth factor (VEGF), nitric oxide signaling, focal adhesion kinase-related pathways, fibroblast activity, cellular migration, and vascular responses following experimental tissue injury. Preclinical studies have also examined BPC-157 in tendon, ligament, muscle, gastrointestinal, and vascular research models. The available evidence remains predominantly preclinical, and observed laboratory findings should not be interpreted as established therapeutic effects in humans.

Research applications

  • Tissue-remodeling pathways
  • Fibroblast migration
  • Tendon and connective-tissue models
  • Angiogenic signaling
  • VEGF-associated pathways
  • Nitric oxide signaling
  • Gastrointestinal tissue models
  • Cellular migration
  • Vascular-response research

Research use & regulatory disclaimer

All products offered by viopep are intended solely for laboratory research and analytical purposes. viopep products are not intended for human or veterinary use or consumption.

Products offered by viopep have not been approved by the U.S. Food and Drug Administration (FDA) for the diagnosis, treatment, cure, mitigation, or prevention of any disease or medical condition. Products are not intended to be used as drugs, food products, dietary supplements, cosmetics, or household products.

Information provided on this website is for general informational and research purposes only. Nothing on this website is intended to constitute medical advice, diagnosis, treatment recommendations, dosing instructions, or guidance regarding human or veterinary use.

By purchasing from viopep, the purchaser acknowledges that products are intended solely for legitimate research purposes and agrees to use and handle all products in accordance with applicable laws, regulations, and appropriate laboratory safety procedures.

Specifications

Specifications for BPC-157
CompoundBPC-157
Peptide Length15 amino acids
Research CategoryTissue & Cellular Signaling
Primary Research AreasTissue remodeling, angiogenic signaling, cellular migration
Catalog strengths5 mg / 10 mg
SKUVP-BPC-5 / VP-BPC-10
PurityPublished on the certificate for each batch
Analytical methodPublished on the certificate for each batch
Testing laboratoryPublished on the certificate for each batch
FormLyophilized research material

Storage and handling

Store lyophilized at -20°C; protect from light and moisture. Reconstitute with bacteriostatic water; refrigerate reconstituted solution at 2-8°C.

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