BPC-157 (10mg)

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Body Protection CompoundResearch Peptide
A stable 15-amino-acid pentadecapeptide derived from a protective protein in human gastric juice — extensively studied for systemic tissue repair and cytoprotection.
  • Tissue & musculoskeletal repair — soft tissue, muscle, and tendon healing
  • Gut & GI cytoprotection — mucosal integrity and epithelial recovery
  • Angiogenesis — upregulates VEGF receptor 2, promotes vascular formation
  • Neuroprotection — CNS recovery via the gut-brain axis
> 99%HPLC Purity 10 mgPer Vial −20°CStorage

Research Use Only

SKU: GL-BPC-157-10 Category:

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Description

Research PeptideBody Protection CompoundLot Verified

BPC-157
Body Protection Compound

A stable 15-amino-acid pentadecapeptide derived from a protective protein found in human gastric juice — extensively studied for its systemic regenerative and cytoprotective properties.

> 99% PurityHPLC VerifiedLyophilized Powder10mg Vial

> 99%HPLC Purity
1419.55MW (Da)
15 AAPeptide Length
10 mgPer Vial

§ 01 — The Compound

A pentadecapeptide fragment of a naturally occurring protective protein.

BPC-157 is a synthetic pentadecapeptide corresponding to a partial sequence of Body Protection Compound, a larger protective polypeptide originally isolated from human gastric juice. Unlike many peptides, it remains remarkably stable across a wide pH range — a property that has made it a subject of extensive investigation in models of systemic injury and recovery.

At Guardian Labs, we provide research-grade BPC-157 rigorously tested to ensure purity exceeding ninety-nine percent — ensuring your laboratory data regarding tissue repair and cytoprotection remains accurate and reproducible.

BPC-157 is notable for its apparent activity across multiple organ systems — from gastrointestinal mucosa to tendon, vasculature, and central nervous tissue — suggesting a systemic, rather than tissue-specific, mechanism.

§ 02 — Proposed Mechanisms

A convergence of pathways — from vascular formation to neurotransmitter modulation.

i

Angiogenic Signalling

Upregulates VEGF receptor 2 expression, promoting the formation of new vasculature essential for tissue repair and recovery.

ii

Nitric Oxide Pathway

Modulates the NO system, influencing vascular tone, blood flow, and mucosal integrity in models of injury.

iii

Growth Factor Activity

Interacts with pathways governing fibroblast migration, collagen synthesis, and the formation of granulation tissue.

iv

Gut-Brain Axis

Influences dopaminergic and serotonergic systems — a proposed link between gastric origin and central nervous activity.

On Stability

BPC-157 distinguishes itself from most peptides through its resistance to gastric acid hydrolysis and its stability across a wide pH range — a property that has supported its broad use in oral and systemic administration studies across decades of research.

§ 03 — Research Applications

Primary subjects of investigation — strictly laboratory use.

A.01

Tissue Repair

Accelerated healing in soft tissue and musculoskeletal injury models, including muscle strain and soft-tissue disruption.

A.02

Gut & GI Tract

Investigations into gastric and intestinal mucosal protection, models of inflammatory bowel injury, and epithelial healing.

A.03

Tendon & Ligament

Studies of tendon-to-bone healing, ligament repair, fibroblast migration, and collagen matrix remodeling.

A.04

Angiogenesis

Research into new blood vessel formation, VEGF pathway activation, and restoration of perfusion in ischemic tissue models.

A.05

Neuroprotection

Models examining neuronal recovery, CNS injury, and the modulation of dopaminergic activity via the gut-brain axis.

§ 04 — Scientific References

Peer-reviewed literature supporting the research potential of this peptide.

i.

Tendon & Musculoskeletal Healing

A seminal investigation into BPC-157 administration in a transected Achilles tendon model reported accelerated tenocyte migration, enhanced cellular outgrowth, and improved functional recovery — establishing the peptide as a focus of ongoing musculoskeletal repair research.

View on PubMed →
ii.

Gastrointestinal Cytoprotection

A body of research spanning multiple ulcer and colitis models found that BPC-157 administration was associated with accelerated mucosal healing, preserved epithelial integrity, and reduced lesion severity — consistent with its original characterization as a protective gastric peptide.

View on PubMed →
iii.

Angiogenesis & VEGF Signalling

Investigators reported that BPC-157 upregulated VEGF receptor 2 expression and promoted new blood vessel formation in injured tissue — a mechanistic finding that helps explain the peptide’s broad activity across organ systems.

View on PubMed →
iv.

Central Nervous System Effects

Studies in rodent models have reported that BPC-157 exerts neuroprotective effects and influences dopaminergic neurotransmission — supporting the hypothesis of a functional link between gastric-origin peptides and central nervous activity via the gut-brain axis.

View on PubMed →

§ 05 — Product Specifications

Certificate of analysis available upon request.

Sequence Gly-Glu-Pro-Pro-Pro-Gly-Lys-Pro-Ala-Asp-Asp-Ala-Gly-Leu-Val
Molecular Formula C₆₂H₀₀N₁₆O₁₆
Molecular Weight 1419.55 g/mol
CAS Number 137525-51-0
Format Lyophilized Powder (Freeze-dried)
Vial Size 10 mg
Purity > 99% (HPLC Verified)
Storage Store at −20°C
Reconstitution Bacteriostatic Water

Research Use Only

All products listed are intended exclusively for laboratory research and development purposes. They are not intended for human consumption, diagnostic, or therapeutic use. Customers must be at least 18 years of age to purchase.

Additional information

Weight 0.0625 lbs
Package Options

10MG Single Vial, 10MG Trio (3 Vials), 10MG Half Kit (5 Vials), 10MG Full Kit (10 Vials)

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