TECHNICAL SPECIFICATIONS
| Item | Specification |
|---|---|
| Product Name | BPC-157 (Body Protection Compound-157) |
| CAS NO. | 137525-51-0 |
| Appearance | White to off-white lyophilized powder |
| Molecular Formula | C₆₂H₉₈N₁₆O₂₂ |
| Molecular Weight | 1419.53 g/mol |
| Purity (RP-HPLC) | ≥ 98.0% |
| Solubility | Soluble in water or bacteriostatic water (≥1 mg/mL); stable at physiological pH |
| Endotoxin | ≤ 1.0 EU/mg (Suitable for cell culture and in vitro use) |
| Biological Activity | Promotes angiogenesis, accelerates wound healing, reduces inflammation, and supports gastrointestinal and musculoskeletal repair |
| Storage Conditions | Lyophilized powder: Store at -20°C, protected from light and moisture (stable 24–36 months). Reconstituted solutions: Store at 2–8°C for up to 14 days or -20°C for up to 3 months |
| Stock Location | Stock in USA |
| MOQ | 1g |



Preclinical studies demonstrate that BPC-157 significantly reduces healing time in muscle, tendon, and ligament injuries, improves bone fracture consolidation, and protects against gastric ulcers. It has also shown efficacy in reducing inflammation and improving functional recovery in animal models of ischemia-reperfusion injury and neurological damage, highlighting its broad therapeutic potential in regenerative research.

4.Certificate
GlobalTech Co., Ltd. is committed to providing high-purity biotechnological peptide products, adhering strictly to quality standards and obtaining internationally recognized certifications.
Our production partners all employ GMP-compliant production systems and possess standardized quality control processes covering raw material procurement, synthesis, purification, testing, packaging, and storage. Each batch of product comes with complete documentation, including a Certificate of Analysis (COA), HPLC purity report, mass spectrometry (MS) chromatograms, and third-party testing reports available upon request.
We prioritize:
1.A rigorous quality management system
2.Batch traceability and stability data
3.Professional laboratory testing and validation
4.Compliance with international trade standards
Our commitment to quality, transparency, and regulatory compliance ensures the provision of reliable, stable, and research-grade peptide products to our global partners.

5.DELIVERY & SHIPPING
We specialize in global logistics for various cosmetic peptides. Your order will be handled with the utmost care, ensuring safe, reliable, and intact delivery.
Professional and Secure Packaging
Each bottle of peptide is protected with a special packaging solution to ensure stability and integrity during transportation.
We can also customize packaging according to customer needs.
Shipping Methods
Main Method: International Air Freight
We primarily use DHL, FedEx, UPS, and TNT because of their global reliability, speed, and advanced tracking systems. Air freight ensures the fastest transit time and minimizes the impact of environmental factors on the product.

Global Technology Co., Ltd. is a modern and advanced enterprise specializing in the production and export of active pharmaceutical ingredients (APIs), peptides, and plant extracts. The company invests in and collaborates closely with domestic manufacturers holding GMP, DMF, and FDA certifications, as well as laboratories at renowned universities, to meet diverse customer needs ranging from gram-level to ton-level. This enables Dejurui Pharmaceutical to provide customers with more flexible and convenient access to cost-effective, high-quality products and superior services.
We focus on the research and development and supply of high-quality chemical products, strictly adhering to international standards and quality systems. Our products are stable in performance and reliable in purity, widely used in industrial manufacturing, scientific research, and the fine chemical industry. We provide solid support at every stage with a professional and responsible attitude.
Hot Tags: BPC157 #PeptideTherapy #WoundHealing #TissueRegeneration #InflammationReductioSportsMedicine n ##ResearchPeptide #PreclinicalResearch #MuscleRepair #GastrointestinalHealth
If you have any product requirements, please send an email to:sales@huanqiukeji9.com;whatsapp:85244219157
BPC-157 is a synthetic peptide that has been studied for its potential role in tissue repair and recovery processes. It is derived from a naturally occurring protective protein found in gastric juice, and research suggests it may influence several biological systems involved in healing.
One of the primary effects observed in research settings is its potential to support soft tissue healing, including muscles, tendons, and ligaments. It is believed to interact with growth factors and cellular signaling pathways that regulate regeneration, which may help accelerate recovery after injury.
BPC-157 has also been studied for its possible impact on inflammation control. It may help modulate inflammatory responses in damaged tissues, creating a more favorable environment for healing. This anti-inflammatory activity is one reason it is frequently explored in sports and regenerative research contexts.
In addition, some studies suggest it may support blood vessel formation (angiogenesis), which can improve blood flow to injured areas. Better circulation may enhance nutrient delivery and tissue repair efficiency.
There is also research into its effects on the gastrointestinal system, as it originates from a protective gastric protein. It may help maintain gut lining integrity and support recovery from digestive tract stress in experimental models.
Overall, BPC-157 is mainly researched for its potential to enhance the body’s natural healing mechanisms, particularly in connective tissues and injury recovery processes, though it is not approved for medical use in humans.
BPC-157 is a research peptide that has been widely studied in laboratory and animal models for its potential effects on tissue repair and inflammation. However, when it comes to daily use in humans, its safety has not been established in clinical trials.
At present, BPC-157 is not approved by major regulatory agencies such as the FDA for medical or therapeutic use. This means there is no officially confirmed dosing guideline, long-term safety data, or standardized daily regimen for humans.
In preclinical studies, BPC-157 has shown promising effects on wound healing, tendon repair, and gastrointestinal protection. However, most of this research has been conducted in animal models, and results may not directly translate to human safety or effectiveness.
Because of the lack of human clinical trials, potential risks of daily use are not fully understood. These could include unknown effects on hormone regulation, immune response, or long-term tissue changes. There is also limited data on interactions with other medications or underlying health conditions.
For these reasons, scientists and health professionals generally emphasize that BPC-157 should be considered experimental only, and not used as a routine daily supplement.
Overall, while early research is interesting, the safety of taking BPC-157 daily in humans remains uncertain and unverified, and caution is strongly advised until more clinical evidence becomes available.
BPC-157 is a synthetic peptide that has been widely researched for its potential role in supporting tissue repair and recovery processes. Although most studies are preclinical, it has attracted significant attention in regenerative science due to its broad biological activity.
One of the main benefits observed in research is its potential to enhance soft tissue healing, including muscles, tendons, and ligaments. It is thought to interact with growth-related signaling pathways that help cells repair and regenerate more efficiently after injury.
Another key area of interest is its possible anti-inflammatory effect. BPC-157 may help regulate inflammatory responses in damaged tissues, which can create a more favorable environment for healing and reduce prolonged irritation in experimental models.
It has also been studied for its influence on blood vessel formation (angiogenesis). By supporting the development of new blood vessels, it may improve circulation to injured areas, allowing better oxygen and nutrient delivery for tissue recovery.
In addition, because it originates from a protective gastric protein, BPC-157 has been researched for its potential role in gastrointestinal protection, including supporting the integrity of the gut lining and recovery from digestive tract stress in animal studies.
Overall, BPC-157 is mainly valued in scientific research for its possible combined effects on healing, inflammation regulation, and tissue regeneration, although its benefits in humans have not yet been confirmed through clinical trials.