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BPC-157 5mg (Research Only)

Original price was: $35.00.Current price is: $29.75.

Contents: 5mg of BPC-157
Form: Lyophilized Powder

Emerging Research Evidence:

Studied for tissue-repair signaling, structural support pathways, cellular resilience, and multi-tissue response markers in pre-clinical research.

Sold for Research Use Only / Not FDA Regulated
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⚠️ Requires Sterile Water for Reconstitution. Type may vary by formulation.
For laboratory use only.

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Batch: BPC1025
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BPC-157 Overview

BPC-157 5mg is a research-grade signaling peptide studied in laboratory models for its involvement in multi-tissue repair and architectural coordination. Often referred to as a ‘Structural Architect,’ this 5mg format allows researchers to map out the precise pathways involved in cellular migration and extracellular-matrix organization. In experimental systems, it is utilized to examine how cells communicate to rebuild structural integrity across skin, bone, and connective-tissue models.

In laboratory settings, BPC-157 is analyzed for its role in angiogenic signaling and the maintenance of epithelial barrier stability. This concentration provides a high-resolution look at how the body’s ‘repair blueprint’ responds to localized experimental stressors. These studies focus strictly on molecular resilience and signaling integration within controlled research environments, rather than any physiological recovery or therapeutic outcomes.

BPC-157 Structure

  • CAS Number (free base): 137525-51-0
  • Molecular Formula: C₆₂H₉₈N₁₆O₂₂
  • Molecular Weight (average): ~1419.5 g/mol
  • Monoisotopic / Exact Mass: 1418.7042 Da
  • Parent Compound: Peptide fragment derived from human gastric juice
    (historically referred to in literature as “Body Protection Compound”)

Synonyms

  • BPC-157
  • Body Protection / Protecting Compound-157 (historical designation)
  • PL-14736
  • Gastric pentadecapeptide
  • GEPPPGKPADDAGLV

Research Areas

  • Gastrointestinal mucosal-integrity signaling:
    Laboratory studies examining epithelial-barrier maintenance and cellular-response mechanisms in ulcer-induced models

  • Musculoskeletal & connective-tissue signaling:
    Research evaluating fibroblast migration, collagen organization, and mineralization-associated pathways in tendon, ligament, muscle, and bone models

  • Angiogenic modulation & vascular signaling:
    Investigation of endothelial-growth-factor regulation and vascular-response coordination in pre-clinical injury systems

  • Neuro-response signaling & CNS research: Experimental models assessing cellular resilience and neural-pathway responses following central-nervous-system injury.

Disclaimer — For Research Purposes Only​

For Research Use Only — Not for Human or Veterinary Use. Not evaluated or approved by the FDA. Not intended to diagnose, treat, cure, or prevent any disease. All information on this website is provided strictly for laboratory research and educational purposes. Nothing herein constitutes medical, clinical, or legal advice, nor an endorsement of non-laboratory use. Any discussion of specific peptides or potential research findings is informational only and must not be interpreted as guidance for use in or on humans or animals.

I am 21 years or older and understand that the products listed on this site are for research purposes only.

Tengo 21 años o más y entiendo que los productos listados en este sitio son solo para fines de investigación.