
Certificate of Analysis
Each batch of BPC + TB-500 undergoes rigorous third-party testing to ensure purity and identity verification. View the full lab report below.
BPC-157 + TB-500 Blend
Research blend combining BPC-157 and Thymosin Beta-4 (TB-500). This combination is popular in research applications studying synergistic peptide interactions.
99%+
5mg+5mg
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For Research Use Only
Intended for in-vitro research only. Not for human consumption. Must be 21+.
Specifications
Certificate of Analysis
Each batch of BPC + TB-500 undergoes rigorous third-party testing to ensure purity and identity verification. View the full lab report below.
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Overview
Biochemical Characteristics
This blend combines two structurally distinct peptides: BPC-157, a linear pentadecapeptide derived from gastric juice proteins, and TB-500, representing the active actin-binding region of Thymosin Beta-4. The combination enables multi-target approaches in experimental models.
Research Applications
Pathway / Mechanistic Context
Preclinical Research Summary
Form & Analytical Testing
Mechanisms of Action
Dual Growth Factor Modulation - Combined VEGF, EGF, and FGF pathway activation through complementary mechanisms
Synergistic Healing - BPC-157's cytoprotective effects combined with TB-500's cell migration promotion
Multi-Pathway Anti-Inflammation - BPC-157 nitric oxide modulation + TB-500 NF-κB and cytokine regulation
Enhanced Cell Migration - TB-500 actin dynamics + BPC-157 chemotactic signaling work in concert
Research Applications
1Synergistic Tissue Repair
Research on combined peptide effects on tissue regeneration.
Key Research Findings
- Studied for enhanced repair compared to individual peptides
- Addresses multiple tissue types simultaneously
- Combines cytoprotective and pro-migratory effects
- Multi-pathway anti-inflammatory action
2Wound Healing Research
Studies on accelerated wound closure through combined mechanisms.
Key Research Findings
- BPC-157 angiogenesis + TB-500 cell migration
- Combined growth factor pathway activation
- Reduced inflammatory response duration
- Enhanced extracellular matrix deposition
3Musculoskeletal Repair Studies
Investigation of tendon, ligament, and muscle healing.
Key Research Findings
- Combined effects on collagen synthesis
- Enhanced fibroblast and tenocyte migration
- Improved tensile strength in repair models
- Functional recovery as an endpoint in injury models
Supporting Research & Bibliography
The following peer-reviewed publications support the research applications described above. References are provided for informational purposes to assist researchers in their literature review.
Total references: 4
Note: The information provided is for research reference only. It summarizes published in-vitro, animal and, where cited, human clinical studies of the compound; findings from those studies are not claims about this product. This product is intended for laboratory research purposes only. Not for human or veterinary use.
Research Use Only: This product is intended for laboratory research purposes only. Not for human or veterinary use. By purchasing, you confirm that you are a qualified researcher and will use this product in accordance with all applicable regulations.




