BPC-157
£27.50
| Quantity | Price | Discount |
|---|---|---|
| 2 | £26.13 | 5% |
| 3-4 | £24.75 | 10% |
| 5+ | £23.38 | 15% |
- Purity: ≥99% (HPLC)
- Batch-controlled manufacturing
- Secure packaging for laboratory handling
- Storage: Store lyophilised powder frozen for long-term stability.
- Following preparation in accordance with laboratory protocols, store solutions refrigerated (2– 8 °C).
- Research use only (not for human or veterinary use)
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- Purity: ≥99% (HPLC)
- Batch-controlled manufacturing
- Secure packaging for laboratory handling
- Storage: Store lyophilised powder frozen for long-term stability.
- Following preparation in accordance with laboratory protocols, store solutions refrigerated (2– 8 °C).
- Research use only (not for human or veterinary use)
Every tissue within the body depends on an intricate network of cellular communication to maintain its structure, organisation and normal function. BPC-157 has become a recognised laboratory research peptide within this field, appearing in studies investigating cellular signalling, tissue biology and the molecular mechanisms involved in physiological repair processes.
As researchers continue to explore how tissues respond, adapt and communicate under controlled laboratory conditions, BPC-157 remains an important subject of experimental biological research.
Key Research Areas
- Tissue biology
- Cellular signalling
- Angiogenesis research
- Extracellular matrix biology
Originally identified from a peptide sequence associated with a naturally occurring gastric protein, BPC-157 has attracted sustained scientific interest because of its broad relevance across tissue biology and cellular communication.
Rather than being investigated within a single biological pathway, it has featured in laboratory studies examining molecular signalling, extracellular matrix biology and the complex interactions that influence normal tissue organisation. This multidisciplinary research profile has established BPC-157 as a recognised research peptide within experimental biology.
One of the principal reasons BPC-157 remains an important subject of scientific investigation is its association with tissue biology. Tissues rely on highly coordinated communication between cells, structural proteins and signalling molecules to maintain organisation and adapt to changing physiological conditions.
Understanding these biological processes continues to be a major objective of biomedical research. Experimental studies involving BPC-157 have therefore explored the molecular pathways involved in cellular communication and tissue organisation.
Closely connected to this work is the study of angiogenesis. The formation and regulation of blood vessels is a fundamental biological process that supports tissue development, maintenance and normal physiological function.
Researchers continue to investigate the signalling pathways involved in vascular biology, with BPC-157 appearing in laboratory studies examining these complex mechanisms under controlled experimental conditions.
Scientific interest in BPC-157 also extends to extracellular matrix biology. The extracellular matrix provides structural support for tissues while regulating communication between cells and influencing how tissues are organised and maintained.
Understanding these interactions remains an important focus of laboratory research, with BPC-157 continuing to feature in studies exploring molecular signalling, tissue architecture and physiological regulation.
What distinguishes BPC-157 from many other research peptides is the breadth of biological systems in which it continues to be investigated. Rather than being limited to one specific area of research, it has become associated with studies spanning tissue biology, cellular communication, vascular biology and extracellular matrix research.
This broad scientific profile continues to make BPC-157 a recognised laboratory research peptide for scientists seeking to better understand the biological mechanisms that regulate tissue structure and cellular organisation.
This overview introduces BPC-157 as a laboratory research peptide and highlights the scientific areas in which it continues to be investigated.
For researchers wishing to explore the published literature, biological pathways and experimental evidence in greater depth, our dedicated BPC-157 Research Guide provides a comprehensive overview of the peptide and its role within contemporary tissue biology research.
Chemical name: Pentadecapeptide BPC-157 (Body Protection Compound-157)
Synonyms: BPC157; PL-14736; Bepecin
Sequence (1-letter): GEPPPGKPADDAGLV
Sequence (3-letter): Gly-Glu-Pro-Pro-Pro-Gly-Lys-Pro-Ala-Asp-Asp-Ala-Gly-Leu-Val
Molecular formula: C₆₂H₉₈N₁₆O₂₂
Molecular weight: ~1419.5 g/mol (may vary by form/salt)
CAS: 137525-51-0
Form: Lyophilised (freeze-dried) powder
Appearance: White to off-white solid
This product is supplied strictly for laboratory research purposes. It is not intended for human consumption or veterinary use and is not marketed for the diagnosis, treatment, cure, mitigation, or prevention of any disease or medical condition. No directions for personal use are provided or implied. The purchaser is responsible for ensuring compliant handling, storage, and use in accordance with applicable laws and regulations.
Certificate of Analysis for BPC-157 — verifying purity, identity, and quality.

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