Buy BPC-157 10mg Peptide Vial

£34.99

HPLC Tested – UKAS & ISO 9001 – >99% Purity

-20°C Cold-Chain Storage

SIZE: 10MG

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BPC-157 10mg Peptide Vial (Body Protection Compound-157)

What is BPC-157 10mg?

BPC-157 (Body Protection Compound-157) is a synthetic pentadecapeptide composed of 15 amino acids (sequence: Gly-Glu-Pro-Pro-Pro-Gln-Pro-Ala-Glu-Val-Leu-Gly-All-Leu-Val). This unique sequence is derived from a naturally occurring protective protein discovered in human gastric juice.
Our BPC-157 10mg formulation offers a highly concentrated, ultra-pure lyophilized powder engineered specifically for laboratory evaluation. In preclinical research models, BPC-157 is widely recognized for its profound cytoprotective (cell-protecting) and tissue-regenerative traits. Because it acts as an organo-protective compound, researchers frequently study this peptide for its localized and systemic healing capabilities across multiple biological systems.

Buy BPC-157 10mg Peptide Vial

The Science of BPC-157: Mechanism of Action

The widespread scientific interest in the BPC-157 benefits stems from its complex, multi-pathway interactions with damaged structural tissues. When deployed in experimental models, the peptide acts through several distinct biochemical pathways:
1. Upregulation of Vascular Endothelial Growth Factor (VEGF)
Angiogenesis—the formation of new blood vessels—is crucial for repairing damaged, poorly vascularized tissues like tendons and ligaments. BPC-157 triggers the early activation of the VEGF pathway. By accelerating new capillary network formation, it optimizes the delivery of oxygen and restorative nutrients directly to the site of injury.
2. Accelerated Collagen Synthesis and Fibroblast Migration
Tendon-to-bone healing requires a meticulous arrangement of structural proteins. BPC-157 promotes the migration and proliferation of fibroblasts, the specialized cells responsible for producing collagen. It actively influences the expression of Type I collagen, assisting in the structural integrity and tensile strength of healing tissues.
3. Modulating the Nitric Oxide (NO) Pathway
BPC-157 exhibits a potent stabilizing effect on the nitric oxide system. It regulates both endothelial nitric oxide synthase (eNOS) and inducible nitric oxide synthase (iNOS). This balance helps protect endothelial linings, modulates the localized inflammatory cascade, and shields mucosal barriers from oxidative stress.

Primary Areas of Interest in BPC-157 Research

Due to its robust biological stability and systemic efficacy, the BPC-157 peptide vial is utilized across several major fields of scientific investigation:

  •  Soft Tissue and Tendon Repair: It is heavily researched for its capacity to accelerate the healing of transected Achilles tendons, torn ligaments, and severe muscle tears.
  • Gastrointestinal Mucosal Healing: Because of its gastric origin, studies heavily focus on BPC-157’s ability to mend inflammatory bowel conditions, repair leaky gut barriers, and resolve gastric ulcers.
  •  Bone and Joint Rejuvenation: Research evaluates the peptide’s role in promoting osteogenic differentiation, making it a key molecule of interest in bone fracture recovery models.
  •  Organo-Protective and Anti-Inflammatory Studies: Investigators look at its systemic ability to protect internal organs (such as the liver and pancreas) against toxic insults and chronic inflammatory damage.

Technical and Chemical Specifications

To ensure precise calibration and absolute reproducibility in your laboratory assays, our BPC-157 10mg vials are manufactured to rigorous analytical standards:

Parameter Specifications
Chemical Name Body Protection Compound-157 Acetate
CAS Number 137525-51-0
Molecular Formula C62HggN16022
Purity Profile ≥ 98.5% (Assessed via
HPLC & Mass
Spectrometry)
Molecular Sequence H-Gly-Glu-Pro-Pro-Pro-Gln-Pro-Ala-Glu-Val-Leu-Gly-All-Leu-Val-OH
Molecular Mass 1419.53 g/mol/mol
Physical Appearance Sterile, Lyophilized White Cake/Powder
Storage Requirements Reconstituted: 2–8°C for short-term use. Lyophilized: -20°C for optimal long-term shelf life.

Why Buy BPC-157 10mg From Us(Buyalluvionline.shop)?

When looking to buy BPC-157 online, research integrity hinges entirely on purity. Our 10mg vials undergo extensive high-performance liquid chromatography (HPLC) testing to ensure every single batch exceeds a 98.5% purity threshold. Lyophilized and vacuum-sealed under strict sterile conditions, this peptide for tissue healing maintains exceptional stability, preventing degradation and ensuring flawless baseline parameters for your experiments.

Laboratory Research Disclaimer

This product is synthesized strictly for in vitro and in vivo laboratory research and development purposes. It is absolutely not intended, cleared, or approved for human consumption, clinical diagnostic procedures, or veterinary applications. All purchasing entities must be qualified researchers or licensed laboratory professionals.

Frequently Asked Questions (FAQ)

  • How should a BPC-157 10mg vial be stored?
    In its lyophilized powder form, the sealed vial is stable at room temperature for brief periods during shipping. However, for long-term storage and to maintain chemical stability, it should be kept desiccated at -20°C.
  • Can BPC-157 and TB-500 be studied together?
    Yes, in modern peptide science, researchers frequently evaluate BPC-157 and TB-500 concurrently. While BPC-157 focuses heavily on localized fibroblast proliferation, collagen alignment, and angiogenic factors, TB-500 acts systemically via actin polymerization to assist cellular migration. Their pathways are considered complementary in experimental tissue repair models.
  • What is the recommended reconstitution liquid?
    For standard laboratory observation and testing, the lyophilized cake is typically reconstituted using Bacteriostatic Water (0.9\% \text{ benzyl alcohol}) or sterile Physiological Saline (0.9\% \text{ NaCl}).

Internal Related Research Articles

What is BPC-157? Complete Research Overview
BPC-157 vs TB-500: Key Differences in Research Models
Peptide Storage and Stability in Laboratory Settings
How Peptides Are Reconstituted for Research Use
Overview of Tissue Repair Peptides in Scientific Studies

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