Description
BPC-157 10mg: Research-Grade Peptide for Laboratory Studies on Tissue and Muscle Models
BPC-157 10mg is a high-purity, research-grade peptide designed for controlled laboratory investigations involving tissue, muscle, joint, and connective tissue models.
This peptide is intended exclusively for scientific research and is not approved for human consumption, clinical use, or veterinary application.
What is BPC-157?
BPC-157 (Body Protection Compound-157) is a synthetic peptide derived from a naturally occurring protein fragment. It is widely used in laboratory research to investigate:
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Peptide signaling pathways in tissue and muscle models
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Cellular mechanisms in connective tissue and musculoskeletal studies
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Collagen and extracellular matrix research
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In vitro and ex vivo models of tissue response
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Experimental designs in wound, tendon, and ligament studies
The 10mg dosage provides adequate material for single-dose, multi-dose, or long-term laboratory experiments.
Key Research Applications of BPC-157 10mg
• Tissue and Muscle Research – Laboratory investigations on peptide interactions with tissue and muscle cell models.
• Cellular and Extracellular Matrix Studies – Examination of collagen synthesis, fibroblast activity, and related pathways in controlled experiments.
• Connective Tissue Investigations – Studies involving tendons, ligaments, and joint-related tissue models in vitro or ex vivo.
• Multi-Phase Experimental Research – Suitable for acute, chronic, or repeated-dose laboratory protocols.
• Peptide Mechanism Exploration – Research focused on peptide signaling, angiogenesis, or related cellular processes.
Why Choose BPC-157 10mg for Research?
BPC-157 10mg is manufactured under strict research-grade standards, ensuring high purity, reproducibility, and batch-to-batch consistency for laboratory investigations.
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High-Purity Manufacturing – Produced using validated peptide synthesis protocols.
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Consistent Quality Control – Each batch is tested for identity, purity, and stability.
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Optimal Quantity for Research – Suitable for short-term, multi-dose, or extended laboratory experiments.
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Research-Only Designation – Intended exclusively for laboratory use by qualified professionals.
Quality Assurance & Purity Testing Guarantee
We provide a purity testing guarantee for all research peptides. Researchers may independently verify the purity of BPC-157 10mg. If results indicate deviation from stated standards, a full refund and reimbursement of testing costs will be provided, ensuring reliable research material.
COA: 3P Tested Purity Results: BPC-157 | 99.258% | 11.3mg | View Test
Important Legal Disclaimer
For Research Purposes Only
BPC-157 10mg is strictly intended for laboratory research and scientific investigation. It is not for human consumption, veterinary use, or clinical application.
This peptide has not been approved by the FDA, Health Canada, or any other regulatory authority for medical or therapeutic use.
By purchasing, you confirm that BPC-157 10mg will be used solely for lawful research purposes in controlled laboratory settings.
Research Literature
Peer-reviewed studies involving this compound and its class. All findings listed are from in vitro, cell culture or animal models and are provided for scientific reference only. This product is supplied for laboratory research and is not approved for human consumption, clinical, or veterinary use.
- Chang CH, et al. J Appl Physiol. 2011;110(3):774-780. In rat Achilles tendon explant culture and isolated tendon fibroblasts, measured explant outgrowth, fibroblast survival under oxidative stress, migration, and FAK/paxillin phosphorylation. Source · PMID 21030672
- Hsieh MJ, et al. J Mol Med (Berl). 2017;95(3):323-333. In chick chorioallantoic membrane assay, a rat hind-limb ischaemia model and human endothelial cell culture, measured vessel density, endothelial tube formation and VEGFR2-Akt-eNOS phosphorylation. Source · PMID 27847966
- Chang CH, et al. Molecules. 2014;19(11):19066-19077. In primary tendon fibroblasts from Sprague-Dawley rat Achilles tendon, measured growth hormone receptor mRNA and protein levels, PCNA expression and JAK2 phosphorylation. Source · PMID 25415472
Literature notes: The published base for this compound is small and concentrated in a limited number of research groups, with little independent replication of in vivo findings.
Related Research Compounds
Browse more compounds in Regenerative Peptides, or view the full research peptide catalogue.





