BPC-157 – Stable Pentadecapeptide for Research
BPC-157 is a synthetic research peptide composed of 15 amino acids. Its compact and well-defined molecular structure makes it particularly relevant for advanced laboratory studies involving peptide signalling, fibroblast activity, cellular migration, extracellular-matrix organisation and vascular-response pathways.
The amino-acid sequence of BPC-157 is:
Gly–Glu–Pro–Pro–Pro–Gly–Lys–Pro–Ala–Asp–Asp–Ala–Gly–Leu–Val
Also written as:
GEPPPGKPADDAGLV
BPC-157 is supplied as a premium lyophilised research material in a securely sealed vial, supported by clear batch information, professional packaging and fast order processing from Peptides Divas.
Vigtige produktfunktioner
- Synthetic 15-amino-acid research peptide
- Clearly defined pentadecapeptide sequence
- Relevant for fibroblast and cellular-migration research
- Suitable for extracellular-matrix studies
- Studied in vascular and nitric-oxide-related models
- Useful for tendon, muscle and gastrointestinal research models
- Suitable for analytical and comparative peptide studies
- Leveres som frysetørret forskningsmateriale
- Tydelige batchspecifikke produktoplysninger
- Sikker og diskret emballage
- Hurtig og sporbar levering i Europa
What Is BPC-157?
BPC-157 is a synthetic pentadecapeptide corresponding to a 15-amino-acid sequence first characterised during research involving gastric proteins.
The name BPC is commonly expanded as Body Protection Compound. The number 157 identifies the specific peptide fragment used in experimental research.
Its relatively short sequence makes BPC-157 useful for laboratories investigating how compact peptide structures interact with cellular signalling systems, extracellular-matrix components and vascular-response pathways.
Published research has primarily used cell cultures and animal models. These studies provide a basis for continued laboratory investigation but do not establish approved therapeutic effects in humans.
Fibroblast Research
Fibroblasts are specialised cells involved in the formation, organisation and maintenance of the extracellular matrix.
BPC-157 has been investigated in laboratory models involving:
- Fibroblast migration
- Fibroblast proliferation
- Cell adhesion
- Cellular spreading
- Cytoskeletal organisation
- Extracellular-matrix interaction
- Collagen-associated pathways
- Growth-factor-receptor expression
- Cellular-response signalling
- Comparative fibroblast assays
Experimental tendon-fibroblast research has examined BPC-157 in relation to FAK and paxillin signalling. These proteins are involved in focal adhesions, cellular movement and communication between cells and the surrounding matrix.
FAK and Paxillin Signalling
Focal adhesion kinase, commonly abbreviated as FAK, and paxillin are signalling proteins involved in cellular adhesion and migration.
BPC-157 may be relevant for controlled research involving:
- FAK phosphorylation
- Paxillin-associated signalling
- Focal-adhesion formation
- Fibroblast migration
- Cell-to-matrix attachment
- Cytoskeletal rearrangement
- Cellular spreading
- Tendon-fibroblast models
- Concentration-response analysis
- Comparative peptide signalling
These pathways are especially relevant for laboratories studying how peptide signals influence the interaction between cells and extracellular structures.
Extracellular-Matrix Research
The extracellular matrix is a complex network of proteins and other molecules that provides structural and biochemical support around cells.
Potential research areas involving BPC-157 include:
- Extracellular-matrix organisation
- Collagen-associated signalling
- Matrix deposition
- Matrix turnover
- Fibroblast–matrix interactions
- Connective-tissue cell models
- Cell adhesion
- Cellular migration
- Tissue-remodelling pathways
- Comparative matrix analysis
Research results depend on the cell type, experimental model, concentration, exposure period and analytical method used.
Vascular and Endothelial Research
BPC-157 has been examined in experimental models involving endothelial cells, vascular responses and angiogenesis-related signalling.
Potential research applications include:
- Endothelial-cell activity
- Vascular-response pathways
- VEGF-associated signalling
- VEGFR-related mechanisms
- Angiogenesis models
- Vascular remodelling
- Endothelial migration
- Blood-vessel formation models
- Cellular responses to vascular stress
- Comparative vascular peptide studies
Published studies have produced model-dependent findings. One study found no direct angiogenic effect in cultured cells while observing modulated angiogenesis in injured animal tissues, demonstrating why findings should be interpreted within the exact experimental model used.
Nitric-Oxide Pathway Research
Nitric oxide is a signalling molecule involved in vascular tone, endothelial function and cellular communication.
BPC-157 is studied in relation to:
- Nitric-oxide synthesis
- Endothelial nitric-oxide signalling
- eNOS-associated pathways
- Vascular-response mechanisms
- Cellular redox balance
- Endothelial stress models
- Vasodilation and vasoconstriction pathways
- Comparative nitric-oxide research
- Signal-transduction analysis
The exact relationship between BPC-157 and nitric-oxide systems remains an active area of preclinical research.
Tendon and Connective-Tissue Models
BPC-157 has frequently been investigated in laboratory and animal models involving tendons, ligaments and skeletal muscle.
Relevant research areas include:
- Tendon-fibroblast migration
- Tendon-cell signalling
- Ligament research models
- Skeletal-muscle models
- Collagen organisation
- Cell adhesion
- Growth-hormone-receptor expression
- Mechanical-tissue models
- Extracellular-matrix remodelling
- Comparative peptide analysis
These findings come mainly from laboratory and animal experiments and should not be represented as proven recovery or healing effects in humans.
Gastrointestinal Research Models
The original scientific interest in BPC-157 developed from research involving gastric proteins and gastrointestinal experimental models.
Potential laboratory applications include:
- Gastric epithelial-cell models
- Intestinal-cell signalling
- Gastrointestinal barrier research
- Mucosal-response models
- Cellular stress pathways
- Cytoprotective signalling research
- Gut–vascular interactions
- Comparative gastrointestinal peptide studies
- Epithelial migration
- Experimental ulcer models
These research areas describe preclinical scientific applications rather than approved gastrointestinal treatments.
Cellular and Molecular Research
BPC-157 may also be relevant for broader cell-based research involving:
- Intracellulær signaltransduktion
- Cellular migration
- Cytoskeletal organisation
- Growth-factor-associated pathways
- Protein-expression analysis
- Gene-expression research
- Cellular stress responses
- Oxidative-balance models
- Endothelial and fibroblast communication
- Comparative peptide screening
Its compact structure makes it suitable for focused studies examining how a defined peptide sequence influences specific cellular systems.
Potentielle forskningsanvendelser
BPC-157 may be used in controlled research involving:
- Fibroblast activity
- FAK and paxillin signalling
- Extracellular-matrix dynamics
- Cellular migration
- Cell adhesion
- Endothelial-cell models
- Vascular-response pathways
- Nitric-oxide-associated signalling
- Tendon and ligament models
- Skeletal-muscle research
- Gastrointestinal epithelial models
- Peptidstabilitet
- Struktur-aktivitetsforhold
- Analytisk peptidkarakterisering
- Kromatografisk analyse
- Massespektrometrianalyse
- Stabilitets- og nedbrydningstest
The receiving laboratory is responsible for selecting and validating suitable experimental conditions, controls and analytical methods.
Analytisk forskning
BPC-157 may be suitable for professional analytical work involving:
- Højtydende væskekromatografi
- Væskekromatografi-massespektrometri
- Bekræftelse af peptididentitet
- Amino-acid-sequence verification
- Renhedsvurdering
- Stabilitetstestning
- Nedbrydningsprofilering
- Solubility research
- Sammenligning af referencematerialer
- Formuleringskompatibilitet
- Udvikling af analytiske metoder
Product identity and quality should always be evaluated using the documentation associated with the applicable batch.
Produktspecifikationer
| Produktkarakteristik |
Information |
| Produktnavn |
BPC-157 |
| Full sequence |
Gly–Glu–Pro–Pro–Pro–Gly–Lys–Pro–Ala–Asp–Asp–Ala–Gly–Leu–Val |
| Sequence abbreviation |
GEPPPGKPADDAGLV |
| Produktkategori |
Syntetisk forskningspeptid |
| Peptidtype |
Pentadecapeptide |
| Peptidlængde |
15 amino acids |
| Primary research areas |
Cellular, matrix and vascular signalling |
| Form |
Frysetørret forskningsmateriale |
| Præsentation |
Sikkert forseglet forskningsflaske |
| Dokumentation |
Batchspecifikke analytiske oplysninger |
| Emballage |
Sikker og diskret emballage |
| Tilsigtet anvendelse |
Videnskabelig, analytisk og laboratorieforskning |
Frysetørret forskningsformat
BPC-157 is supplied as a lyophilised research material in a securely sealed vial.
Lyophilisation removes moisture and helps support product stability during controlled storage and transportation. Minor differences in physical appearance may occur because of quantity, production conditions and residual moisture.
Physical appearance alone should not be used to determine peptide identity, purity or analytical quality.
Kvalitet og produkttransparens
Peptides Divas focuses on clear product specifications, professional handling and batch-level traceability.
Available analytical information may include:
- Produktidentifikation
- Amino-acid sequence
- Batch- eller lotnummer
- Rapporteret renhed
- HPLC-analyse
- Massespektrometridata
- Testoplysninger
- Produktets udseende
- Opbevaringsanbefalinger
Dette giver forskere klare og sporbare oplysninger om det relevante produktparti.
Opbevaringsoplysninger
Store BPC-157 in its original sealed packaging according to the conditions displayed on the product label and applicable batch documentation.
Protect the research material from:
- Direkte sollys
- Overdreven varme
- Fugtighed
- Forurening
- Beskadiget emballage
- Gentagne temperaturudsving
- Unødvendig eksponering for luft
The receiving laboratory is responsible for establishing and validating appropriate preparation, handling and storage procedures for its research protocol.
Why Choose BPC-157?
BPC-157 offers a compact and clearly defined molecular structure for advanced cellular and analytical research.
Key research advantages include:
- Precisely defined 15-amino-acid sequence
- Relevant for fibroblast research
- Suitable for FAK–paxillin pathway studies
- Useful for extracellular-matrix models
- Relevant for endothelial and vascular research
- Suitable for comparative peptide analysis
- Praktisk frysetørret præsentation
- Tydelige batchspecifikke produktoplysninger
Hvorfor bestille fra Peptides Divas?
Peptides Divas kombinerer omhyggeligt udvalgte forskningsmaterialer med hurtig, pålidelig og professionel service. Kunderne drager fordel af:
- Tydelig viste produktspecifikationer
- Batchspecifikke analytiske oplysninger
- Hurtig ordrebehandling
- Sikker og diskret emballage
- Sporbare forsendelsesmuligheder
- Omhyggelig beskyttelse af hætteglasset
- Responsiv kundesupport
- Pålidelig europæisk levering
Choose BPC-157 from Peptides Divas for advanced laboratory research involving fibroblast activity, cellular migration, extracellular-matrix organisation and vascular signalling.
For laboratory research use only. Not intended for human or veterinary use.