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BPC-157 10mg research peptide vial BESTSELLER

Recovery Research

BPC-157 10mg

99.5% Purity In Stock

$55.00

10mg lyophilized vial · COA included

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10 in stock

3rd-Party Verified
99%+ Purity Standard
Cold-Chain Packaging
Fast US Dispatch
  • All Products are supplied in lyophilized (powder) form
  • Bacteriostatic Water (BAC Water) is sold separately.
  • Intended exclusively for laboratory and in vitro research use.

Description Description

BPC-157 is a synthetic research peptide derived from a naturally occurring protein sequence. It is widely investigated in laboratory settings for its role in cellular communication, tissue response mechanisms, angiogenic pathway modeling, and extracellular matrix signaling. Researchers utilize BPC-157 to examine biological processes involved in connective tissue research, vascular signaling, and cellular regeneration models.

This compound is manufactured exclusively for scientific investigation and is not intended for human or veterinary applications.

Specifications Specifications

Product Classification: Research Use Only (RUO)

Total Content: 10 mg lyophilized peptide per vial

Compound: BPC-157

Form: Sterile lyophilized powder

Purity: ≥99%

Storage: Store at −20°C in a dry environment, protected from light.

Packaging: Laboratory glass vial with protective sleeve.

Applications Applications

Designed for laboratory investigations involving:

  • Cellular repair pathway studies
  • Connective tissue research
  • Angiogenesis pathway models
  • Fibroblast signaling research
  • Extracellular matrix investigations
  • Tissue remodeling studies
  • Vascular response research
  • Comparative peptide analysis

Warning Warning

For laboratory research only.

Not intended for human consumption, veterinary use, therapeutic use, or diagnostic applications.

Scientific Report Scientific Report

Abstract

BPC-157 is investigated for its activity in laboratory models examining cellular repair mechanisms, angiogenic signaling, connective tissue response, and extracellular matrix communication. Researchers continue to study its role within experimental models involving cellular signaling and tissue-related biological pathways.

Mechanistic Pathway

Cellular Communication

Supports laboratory investigation of intracellular signaling associated with tissue response.

  • Cellular signaling models
  • Messenger pathway evaluation
  • Biological communication research

Research Focus: Cellular communication mechanisms.

Angiogenic Signaling

Investigated for interaction with vascular signaling pathways.

  • Endothelial pathway research
  • Blood vessel formation models
  • Cellular growth signaling

Research Focus: Angiogenesis-associated pathway investigation.

Connective Tissue Models

Supports laboratory studies examining extracellular matrix interactions.

  • Collagen pathway models
  • Fibroblast signaling
  • Matrix remodeling research

Research Focus: Connective tissue pathway analysis.

Pharmacokinetic / Research Profile

Compound Primary Research Pathways Research Focus
BPC-157 Cellular Repair • Angiogenesis • Extracellular Matrix Tissue signaling models

Research Models

Used exclusively in controlled laboratory environments to investigate peptide-associated cellular signaling and tissue response pathways.

No human or animal dosing recommendations are provided.

Preclinical Research Highlights

Current laboratory research includes:

  • Cellular repair investigations
  • Angiogenic pathway analysis
  • Connective tissue models
  • Fibroblast signaling studies
  • Extracellular matrix research
  • Comparative peptide investigations

Conclusion

BPC-157 provides researchers with a peptide model suitable for investigating connective tissue signaling, angiogenic pathways, and cellular communication within controlled laboratory environments.

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RUO Verification

Platinum Pro Research provides laboratory-grade research compounds exclusively for qualified researchers and laboratories.

All products are provided for laboratory research only and are not intended for human or veterinary use, diagnosis, treatment, or consumption.