BPC-157 Peptide: Research Peptide
$53.00
Description
BPC-157 (Body Protection Compound-157) is a synthetic pentadecapeptide consisting of 15 amino acids and is derived from a naturally occurring gastric protein sequence. As an investigational research peptide, BPC-157 is widely studied in laboratory environments for its interactions with cellular signaling pathways involved in angiogenesis, extracellular matrix remodeling, inflammatory responses, endothelial biology, and tissue repair mechanisms.
Supplied as a high-purity lyophilized powder, BPC-157 is intended exclusively for scientific and laboratory research. It is not approved for human or veterinary use and should only be handled by qualified professionals conducting controlled experimental studies.
Product Overview
BPC-157 has attracted significant research interest because of its involvement in multiple molecular signaling pathways rather than a single receptor target. Laboratory investigations focus on how this peptide influences intracellular communication, growth factor signaling, nitric oxide pathways, and structural protein regulation in various in vitro and preclinical research models.
Researchers utilize BPC-157 to study mechanisms associated with endothelial cell biology, fibroblast activity, cytoskeletal organization, inflammatory mediator expression, and extracellular matrix remodeling. Its broad range of investigational applications makes it a valuable research tool across gastrointestinal, musculoskeletal, vascular, and neuroscience studies.
Product Specifications
- Product Name: BPC-157
- Category: Synthetic pentadecapeptide (15 amino acids)
- Research Classification: Investigational peptide for laboratory research
- Molecular Formula: C₆₂H₉₈N₁₆O₂₂
- Molecular Weight: Approximately 1419.5 g/mol
- Peptide Length: 15 amino acids
- Purity: ≥95–98% (HPLC verified)
- Appearance: White to off-white lyophilized powder
- Storage (Lyophilized): −20°C to −80°C, protected from moisture and light
- Storage (Reconstituted): 4°C for short-term laboratory use
- Compliance: Not approved by FDA or EMA; supplied for laboratory research only
Molecular Pathway Research
BPC-157 is investigated for its influence on numerous cellular signaling networks that regulate tissue organization, vascular biology, and cellular communication.
Angiogenesis and Endothelial Cell Research
One of the primary areas of investigation involves angiogenesis-related signaling pathways. Laboratory studies evaluate the peptide’s effects on vascular endothelial growth factor receptor 2 (VEGFR2), focal adhesion kinase (FAK), and paxillin signaling.
Researchers examine experimental models involving:
- Endothelial cell proliferation
- Cell migration assays
- Cytoskeletal organization
- Integrin-mediated signaling
- VEGFR2 activation mechanisms
- Cellular adhesion pathways
These investigations contribute to a greater understanding of vascular biology and endothelial cell function under controlled laboratory conditions.
Cell Signaling Pathway Studies
BPC-157 is also utilized to investigate intracellular signaling cascades involved in cellular survival and metabolic regulation.
Research commonly explores:
- MAPK/ERK pathway activation
- PI3K-Akt signaling
- Protein synthesis mechanisms
- Apoptosis regulation
- Cellular stress responses
- Intracellular kinase activity
These molecular studies help researchers better understand how signaling pathways coordinate cellular adaptation and communication.
Nitric Oxide and Vascular Biology Research
Experimental studies investigate the interaction between BPC-157 and nitric oxide-related signaling systems. Laboratory models examine endothelial nitric oxide synthase (eNOS), caveolin-1 interactions, and nitric oxide production pathways.
Areas of investigation include:
- Endothelial function
- Microcirculatory signaling
- Platelet aggregation pathways
- Vascular homeostasis
- Nitric oxide production mechanisms
These research models provide insight into endothelial biology and vascular signaling networks.
Inflammatory Pathway Investigations
Researchers use BPC-157 to examine molecular pathways involved in inflammation and cytokine regulation.
Laboratory investigations may include:
- NF-κB signaling
- TNF-α expression
- IL-1β and IL-6 pathway analysis
- COX-2 regulation
- Oxidative stress mechanisms
- Cellular inflammatory responses
These studies focus on understanding molecular signaling rather than evaluating therapeutic outcomes.
Growth Factor and Gene Expression Research
BPC-157 is investigated for its relationship with growth factor signaling and gene expression pathways that regulate cellular development and tissue organization.
Research interests include:
- Early growth response gene (EGR-1) expression
- IGF-1 signaling
- Growth hormone-related pathways
- Matrix metalloproteinase regulation
- Angiogenic mediator expression
- Cellular transcription mechanisms
Such studies help clarify the complex interactions between growth factor signaling and tissue biology.
Extracellular Matrix Remodeling Studies
The extracellular matrix plays a critical role in maintaining tissue architecture. Laboratory research examines BPC-157’s influence on fibroblast behavior and structural protein organization.
Experimental investigations include:
- Collagen synthesis pathways
- Fibroblast migration
- Matrix metalloproteinase activity
- Extracellular matrix organization
- Structural protein remodeling
- Cell-matrix interactions
These studies are performed in controlled laboratory environments to better understand cellular repair mechanisms.
Laboratory Research Applications
BPC-157 is widely used in diverse areas of scientific investigation, including:
- Gastrointestinal research involving gastric epithelial biology and intestinal barrier function
- Musculoskeletal studies examining tendon, ligament, muscle, cartilage, and bone cell cultures
- Organ system research using liver, kidney, lung, and vascular tissue models
- Neuroscience research involving neuronal signaling and neurovascular interactions
Laboratory Handling and Storage
For research applications, BPC-157 should be handled using appropriate laboratory procedures.
- Store lyophilized peptide between −20°C and −80°C.
- Protect from moisture and direct light.
- Reconstitute using sterile laboratory techniques.
- Store reconstituted solutions at 4°C for short-term laboratory use.
- Prepare aliquots to minimize repeated freeze-thaw cycles.
Proper storage helps maintain peptide stability and experimental consistency.
Quality and Research Standards
Each batch of BPC-157 is manufactured to high research-quality standards and undergoes HPLC purity verification. The lyophilized formulation supports long-term laboratory storage while providing flexibility for experimental preparation.
Researchers value BPC-157 for investigations involving molecular signaling, endothelial biology, extracellular matrix remodeling, inflammatory pathways, and cellular physiology.
Frequently Asked Questions
1. What is BPC-157?
BPC-157 is a synthetic 15-amino-acid research peptide derived from a gastric protein sequence. It is supplied exclusively for laboratory research investigating cellular signaling, tissue biology, angiogenesis, and molecular repair pathways. It is not approved for human or veterinary use.
2. What research applications is BPC-157 commonly used for?
BPC-157 is studied in laboratory models involving gastrointestinal biology, musculoskeletal tissue research, endothelial function, inflammatory signaling, extracellular matrix remodeling, vascular biology, and neuroscience. All applications are limited to controlled scientific research.
3. How should BPC-157 be stored?
The lyophilized peptide should be stored between −20°C and −80°C in a dry environment protected from light. After reconstitution, laboratory protocols generally recommend refrigeration at 4°C for short-term use while avoiding repeated freeze-thaw cycles to preserve peptide stability.
4. Is BPC-157 approved for medical or therapeutic use?
No. BPC-157 is not approved by the FDA or EMA for medical use and is listed as a prohibited substance by the World Anti-Doping Agency (WADA). It is distributed exclusively for laboratory research and investigational purposes.
Research Use Notice
BPC-157 is intended strictly for laboratory and scientific research conducted by qualified professionals. It is not a pharmaceutical product, dietary supplement, cosmetic, or food. This product is not intended to diagnose, treat, cure, or prevent any disease and must not be used for human or veterinary applications.
Additional information
| Size | 5mg, 10mg |
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