This PRODUCT IS INTENDED AS A RESEARCH CHEMICAL ONLY. This designation allows the use of research chemicals strictly for in vitro testing and laboratory experimentation only. All product information available on this website is for educational purposes only. Bodily introduction of any kind into humans or animals is strictly forbidden by law. This product should only be handled by licensed, qualified professionals. This product is not a drug, food, or cosmetic and may not be misbranded, misused or mislabeled as a drug, food or cosmetic.
Product Usage:
This PRODUCT IS INTENDED AS A RESEARCH CHEMICAL ONLY. This designation allows the use of research chemicals strictly for in vitro testing and laboratory experimentation only. All product information available on this website is for educational purposes only. Bodily introduction of any kind into humans or animals is strictly forbidden by law. This product should only be handled by licensed, qualified professionals. This product is not a drug, food, or cosmetic and may not be misbranded, misused or mislabeled as a drug, food or cosmetic.


Biochemicals
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BPC-157
$
129 AUD
$129
Product description
BPC-157 is a synthetic peptide derived from a sequence found in a naturally occurring body protection compound. It is widely used in laboratory research to study cellular signalling, tissue response, and inflammatory pathways. BPC-157 is of interest in controlled experimental settings examining mechanisms related to cell repair, angiogenesis, and gastrointestinal research models. This compound is supplied strictly for research purposes only and is not intended for human or veterinary use.
Product description
BPC-157 is a synthetic peptide derived from a sequence found in a naturally occurring body protection compound. It is widely used in laboratory research to study cellular signalling, tissue response, and inflammatory pathways. BPC-157 is of interest in controlled experimental settings examining mechanisms related to cell repair, angiogenesis, and gastrointestinal research models. This compound is supplied strictly for research purposes only and is not intended for human or veterinary use.
Product description
BPC-157 is a synthetic peptide derived from a sequence found in a naturally occurring body protection compound. It is widely used in laboratory research to study cellular signalling, tissue response, and inflammatory pathways. BPC-157 is of interest in controlled experimental settings examining mechanisms related to cell repair, angiogenesis, and gastrointestinal research models. This compound is supplied strictly for research purposes only and is not intended for human or veterinary use.
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Categories
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O-304 100mg (30 Capsules)
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BPC157, Thymosin β4 Fragment
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Adipotide (FTPP) 10mg
AICAR 50mg
AOD9604 6mg
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Bronchogen 20mg
B7-33 6mg
Cardiogen 20mg
Cartalax 20mg
Chonluten 20mg
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Epithalon (Epitalon) 20mg
Epithalon (Epitalon) 50mg
FGL-S 10mg
Follistatin-315
Follistatin-344
FOXO4-DRI 10mg
GHK Basic 50mg
GHRH 5mg
GHRP-2 5mg
GHRP-2 10mg
GHRH (GH-Releasing Hormone)
Gonadorelin 10mg (GnRH)
Hexarelin 2mg
Hexarelin 5mg
Humanin 10mg
Livagen 20mg
LL-37 5mg (CAP-18)
MGF IGF-1 Ec 5mg
N-Acetyl Epithalon Amidate 20mg
N-Acetyl Selank Amidate 10mg
N-Acetyl Semax Amidate 30mg
NAD+ 100mg
NAD+ 750mg
Oxytocin 10mg (6000 IU)
Ovagen 20mg
Pancragen 20mg
PE-22-28
PEG-MGF (Pegylated MGF) 5mg
Pinealon 20mg
PNC-27 5mg
Prostamax 20mg
PT-141 (Bremelanotide) 3mg x 10 Vials
PT-141 (Bremelanotide) 10mg
P21 (P021) 5 mg
Selank 10mg
Semax 30mg
Sermorelin 2mg
Sermorelin 5mg
Sermorelin 15mg
TB-500 (Thymosin Beta-4) 2mg x 10 Vials
TB-500 (Thymosin Beta-4) 5mg
TB-500 (Thymosin Beta-4) 10mg
TB-500 Fragment (17-23)
Tesamorelin 2mg
Tesamorelin 5mg
Testagen 20mg
Thymagen 20mg
Thymosin Alpha-1 3mg
Thymosin Alpha-1 10mg
Thymalin 20mg
Thyrotropin TRH 20mg
Thyrotropin TRH 50mg
Triptorelin (GnRH) 2mg
Vesugen 20mg
Vesilute 20mg
Vilon 20mg
VIP 6 mg (Vasoactive Intestinal Peptide)
BPC157, TB500 10mg Blend
BPC157, TB500 20mg Blend
BPC157, TB500, GHK-Cu 30mg Glow Blend
BPC157, TB500, GHK-Cu 60mg Glow Blend
BPC157, TB500, GHK-Cu KPV 80mg Klow Blend
CJC1295, GHRP2 10mg Blend
CJC1295, GHRP6 10mg Blend
CJC1295, Hexarelin 10mg Blend
CJC1295, Ipamorelin 10mg Blend
Fragment, CJC1295, Ipamorelin Blend
Fragment, ModGRF, Ipamorelin Blend
ModGRF, GHRP2 10mg Blend
ModGRF, GHRP6 10mg Blend
ModGRF, Hexarelin 10mg Blend
ModGRF, Ipamorelin 10mg Blend
Sermorelin, Ipamorelin 10mg Blend
Sermorelin, GHRP6, GHRP2 Blend
Tesamorelin, CJC1295, Ipamorelin 12mg Blend
Tesamorelin, Ipamorelin 8mg Blend
IGF-1 LR3 1mg
IGF-1 LR3 Receptor 100mcg
IGF-1 LR3 Receptor Grade 1mg
MGF IGF-1 Ec 5mg
Melanotan 1 (10mg) (Melanotan)
Melanotan 2 (10mg) (Melanotan II)
Melanotan 2 (3mg) (Melanotan II)
PT-141 (10mg) (Bremelanotide)
PT-141 (3mg) (Bremelanotide)
Bronchogen 20mg
Cardiogen 20mg
Cartalax 20mg
Chonluten 20mg
Cortagen 20mg
Epithalon (Epitalon) 20mg
Epithalon (Epitalon) 50mg
Livagen 20mg
N-Acetyl Epithalon Amidate 20mg
Ovagen 20mg
Pancragen 20mg
Pinealon 20mg
Prostamax 20mg
Testagen 20mg
Thymagen 20mg
Vesugen 20mg
Vesilute 20mg
Vilon 20mg
Acetyl Hexapeptide-3 (Argireline)
AHK (Tripeptide-3)
AHK-Cu (Copper Peptide)
Decapeptide-12
GHK Basic 200mg (Tripeptide-1)
GHK-Cu 200mg (Copper Peptide)
GHK-Cu 500mg (Copper Peptide)
GHK-Cu 1000mg (Copper Peptide)
Matrixyl (palmitoyl pentapeptide-3)
Melanostatin DM
Nonapeptide-1
Pal-AHK
Pal-GHK (Palmitoyl Tripeptide-1)
Palmitoyl Dipeptide-6
Pentapeptide-18 (Leuphasyl)
Rigin (Palmitoyl Tetrapeptide-7)
SNAP-8 200mg
Syn-AKE
Syn-Coll (Palmitoyl Tripeptide-5)
Tripeptide-29 (Collagen peptide)
Vialox (Pentapeptide-3V)
Chemical Properties
Description
COA / HPLC / MS
Chemical Properties
Description
COA / HPLC / MS
Chemical Properties
Description
COA / HPLC / MS
Overview
Biochemical Characteristics
Research Applications
Pathway / Mechanistic Context
Form & Analytical Testing
RUO Disclaimer


Overview
Biochemical Characteristics
Research Applications
Pathway / Mechanistic Context
Form & Analytical Testing
RUO Disclaimer

Overview
Biochemical Characteristics
Research Applications
Pathway / Mechanistic Context
Form & Analytical Testing
RUO Disclaimer
Overview
BPC-157 (body protection compound-157) is a 15-amino acid pentadecapeptide derived from gastric juice secretions, designed as a potent tissue-protective and regenerative agent. The peptide exhibits broad cytoprotective effects and supports accelerated healing and tissue repair across multiple organ systems. BPC-157 is extensively studied for its potential in supporting wound healing, tissue regeneration, gastrointestinal health, and recovery from injury. Research indicates the peptide activates growth factor signaling pathways, promotes angiogenesis, enhances fibroblast function, and provides neuroprotective effects through multiple coordinated mechanisms. BPC-157 represents a valuable research tool for investigating tissue repair biology, regeneration mechanisms, and therapeutic approaches to injuries, gastric ulcers, and tissue damage across organ systems.
Overview
BPC-157 (body protection compound-157) is a 15-amino acid pentadecapeptide derived from gastric juice secretions, designed as a potent tissue-protective and regenerative agent. The peptide exhibits broad cytoprotective effects and supports accelerated healing and tissue repair across multiple organ systems. BPC-157 is extensively studied for its potential in supporting wound healing, tissue regeneration, gastrointestinal health, and recovery from injury. Research indicates the peptide activates growth factor signaling pathways, promotes angiogenesis, enhances fibroblast function, and provides neuroprotective effects through multiple coordinated mechanisms. BPC-157 represents a valuable research tool for investigating tissue repair biology, regeneration mechanisms, and therapeutic approaches to injuries, gastric ulcers, and tissue damage across organ systems.
Overview
BPC-157 (body protection compound-157) is a 15-amino acid pentadecapeptide derived from gastric juice secretions, designed as a potent tissue-protective and regenerative agent. The peptide exhibits broad cytoprotective effects and supports accelerated healing and tissue repair across multiple organ systems. BPC-157 is extensively studied for its potential in supporting wound healing, tissue regeneration, gastrointestinal health, and recovery from injury. Research indicates the peptide activates growth factor signaling pathways, promotes angiogenesis, enhances fibroblast function, and provides neuroprotective effects through multiple coordinated mechanisms. BPC-157 represents a valuable research tool for investigating tissue repair biology, regeneration mechanisms, and therapeutic approaches to injuries, gastric ulcers, and tissue damage across organ systems.
Biochemical Characteristics
BPC-157 is a 15-amino acid pentadecapeptide with molecular weight of approximately 1,502 Da. The peptide exhibits remarkable enzymatic resistance and stability, with reported oral bioavailability enabling multiple routes of administration including oral, intravenous, intramuscular, and topical. The peptide is water-soluble and demonstrates excellent stability across physiological pH ranges (6.5–8.0). BPC-157 exhibits extended biological half-life and resistance to enzymatic degradation, supporting persistent cellular effects. The peptide shows broad tissue distribution and localization to sites of injury and damage. Cellular uptake occurs through peptide transporter mechanisms and growth factor receptor pathways on fibroblasts, endothelial cells, and immune cells involved in tissue repair.
Biochemical Characteristics
BPC-157 is a 15-amino acid pentadecapeptide with molecular weight of approximately 1,502 Da. The peptide exhibits remarkable enzymatic resistance and stability, with reported oral bioavailability enabling multiple routes of administration including oral, intravenous, intramuscular, and topical. The peptide is water-soluble and demonstrates excellent stability across physiological pH ranges (6.5–8.0). BPC-157 exhibits extended biological half-life and resistance to enzymatic degradation, supporting persistent cellular effects. The peptide shows broad tissue distribution and localization to sites of injury and damage. Cellular uptake occurs through peptide transporter mechanisms and growth factor receptor pathways on fibroblasts, endothelial cells, and immune cells involved in tissue repair.
Biochemical Characteristics
BPC-157 is a 15-amino acid pentadecapeptide with molecular weight of approximately 1,502 Da. The peptide exhibits remarkable enzymatic resistance and stability, with reported oral bioavailability enabling multiple routes of administration including oral, intravenous, intramuscular, and topical. The peptide is water-soluble and demonstrates excellent stability across physiological pH ranges (6.5–8.0). BPC-157 exhibits extended biological half-life and resistance to enzymatic degradation, supporting persistent cellular effects. The peptide shows broad tissue distribution and localization to sites of injury and damage. Cellular uptake occurs through peptide transporter mechanisms and growth factor receptor pathways on fibroblasts, endothelial cells, and immune cells involved in tissue repair.
Research Applications
Wound Healing Acceleration Investigation of BPC-157-induced enhancement of wound closure rates and tissue re-epithelialization. Tissue Regeneration Assessment of enhanced regeneration of skin, muscle, tendon, ligament, and connective tissues. Musculoskeletal Injury Recovery Study of accelerated recovery from muscle strain, muscle tear, tendon injury, and ligament damage. Gastrointestinal Protection Investigation of protective effects in gastric ulcer healing and gastrointestinal tissue repair. Angiogenesis & Vascularization Assessment of enhanced new blood vessel formation and improved tissue perfusion in healing tissues. Neuroprotection & Nerve Repair Study of protective effects against neurotoxicity and enhancement of peripheral nerve regeneration. Organ Protective Effects Investigation of cytoprotective effects in multiple organ systems including brain, heart, kidney, and liver.
Research Applications
Wound Healing Acceleration Investigation of BPC-157-induced enhancement of wound closure rates and tissue re-epithelialization. Tissue Regeneration Assessment of enhanced regeneration of skin, muscle, tendon, ligament, and connective tissues. Musculoskeletal Injury Recovery Study of accelerated recovery from muscle strain, muscle tear, tendon injury, and ligament damage. Gastrointestinal Protection Investigation of protective effects in gastric ulcer healing and gastrointestinal tissue repair. Angiogenesis & Vascularization Assessment of enhanced new blood vessel formation and improved tissue perfusion in healing tissues. Neuroprotection & Nerve Repair Study of protective effects against neurotoxicity and enhancement of peripheral nerve regeneration. Organ Protective Effects Investigation of cytoprotective effects in multiple organ systems including brain, heart, kidney, and liver.
Research Applications
Wound Healing Acceleration Investigation of BPC-157-induced enhancement of wound closure rates and tissue re-epithelialization. Tissue Regeneration Assessment of enhanced regeneration of skin, muscle, tendon, ligament, and connective tissues. Musculoskeletal Injury Recovery Study of accelerated recovery from muscle strain, muscle tear, tendon injury, and ligament damage. Gastrointestinal Protection Investigation of protective effects in gastric ulcer healing and gastrointestinal tissue repair. Angiogenesis & Vascularization Assessment of enhanced new blood vessel formation and improved tissue perfusion in healing tissues. Neuroprotection & Nerve Repair Study of protective effects against neurotoxicity and enhancement of peripheral nerve regeneration. Organ Protective Effects Investigation of cytoprotective effects in multiple organ systems including brain, heart, kidney, and liver.
Pathway / Mechanistic Context
Growth Factor Activation BPC-157 activates multiple growth factor signaling pathways including vascular endothelial growth factor (VEGF), fibroblast growth factor (FGF), and hepatocyte growth factor (HGF), promoting angiogenesis and cell proliferation. Angiogenic Stimulation The peptide enhances endothelial cell proliferation, migration, and capillary tube formation through growth factor receptor activation, promoting new blood vessel formation in healing tissues. Fibroblast Activation & Collagen Production BPC-157 directly stimulates fibroblast proliferation and enhances collagen synthesis through growth factor-dependent mechanisms, supporting organized extracellular matrix deposition. Cytoprotective Anti-Apoptotic Effects The peptide suppresses apoptosis in damaged cells through enhancement of anti-apoptotic signaling and reduction of pro-apoptotic signals, preserving cellular viability in stressed tissues. Inflammatory Response Modulation BPC-157 promotes anti-inflammatory cytokine production and suppresses excessive pro-inflammatory responses, optimizing inflammatory microenvironment for tissue healing. Neuroprotective & Neurotrophic Effects The peptide enhances nerve growth factor (NGF) signaling, protects against neurotoxic insults, and promotes peripheral nerve regeneration through enhancement of nerve outgrowth.
Pathway / Mechanistic Context
Growth Factor Activation BPC-157 activates multiple growth factor signaling pathways including vascular endothelial growth factor (VEGF), fibroblast growth factor (FGF), and hepatocyte growth factor (HGF), promoting angiogenesis and cell proliferation. Angiogenic Stimulation The peptide enhances endothelial cell proliferation, migration, and capillary tube formation through growth factor receptor activation, promoting new blood vessel formation in healing tissues. Fibroblast Activation & Collagen Production BPC-157 directly stimulates fibroblast proliferation and enhances collagen synthesis through growth factor-dependent mechanisms, supporting organized extracellular matrix deposition. Cytoprotective Anti-Apoptotic Effects The peptide suppresses apoptosis in damaged cells through enhancement of anti-apoptotic signaling and reduction of pro-apoptotic signals, preserving cellular viability in stressed tissues. Inflammatory Response Modulation BPC-157 promotes anti-inflammatory cytokine production and suppresses excessive pro-inflammatory responses, optimizing inflammatory microenvironment for tissue healing. Neuroprotective & Neurotrophic Effects The peptide enhances nerve growth factor (NGF) signaling, protects against neurotoxic insults, and promotes peripheral nerve regeneration through enhancement of nerve outgrowth.
Pathway / Mechanistic Context
Growth Factor Activation BPC-157 activates multiple growth factor signaling pathways including vascular endothelial growth factor (VEGF), fibroblast growth factor (FGF), and hepatocyte growth factor (HGF), promoting angiogenesis and cell proliferation. Angiogenic Stimulation The peptide enhances endothelial cell proliferation, migration, and capillary tube formation through growth factor receptor activation, promoting new blood vessel formation in healing tissues. Fibroblast Activation & Collagen Production BPC-157 directly stimulates fibroblast proliferation and enhances collagen synthesis through growth factor-dependent mechanisms, supporting organized extracellular matrix deposition. Cytoprotective Anti-Apoptotic Effects The peptide suppresses apoptosis in damaged cells through enhancement of anti-apoptotic signaling and reduction of pro-apoptotic signals, preserving cellular viability in stressed tissues. Inflammatory Response Modulation BPC-157 promotes anti-inflammatory cytokine production and suppresses excessive pro-inflammatory responses, optimizing inflammatory microenvironment for tissue healing. Neuroprotective & Neurotrophic Effects The peptide enhances nerve growth factor (NGF) signaling, protects against neurotoxic insults, and promotes peripheral nerve regeneration through enhancement of nerve outgrowth.
Preclinical Research Summary
BPC-157 is supplied as sterile aqueous solution or lyophilized powder at concentrations of 1–10 mg/mL. Storage at 2–8°C; shelf-life 12–24 months for solutions, 24–36 months for lyophilized material. Analytical testing includes HPLC purity verification (≥95%), HPLC-MS molecular confirmation, amino acid analysis, and microbial sterility/endotoxin testing. Bioassay verification of growth factor activation and cell migration enhancement available upon request. Certificate of Analysis provided with each lot.
Preclinical Research Summary
BPC-157 is supplied as sterile aqueous solution or lyophilized powder at concentrations of 1–10 mg/mL. Storage at 2–8°C; shelf-life 12–24 months for solutions, 24–36 months for lyophilized material. Analytical testing includes HPLC purity verification (≥95%), HPLC-MS molecular confirmation, amino acid analysis, and microbial sterility/endotoxin testing. Bioassay verification of growth factor activation and cell migration enhancement available upon request. Certificate of Analysis provided with each lot.
Preclinical Research Summary
BPC-157 is supplied as sterile aqueous solution or lyophilized powder at concentrations of 1–10 mg/mL. Storage at 2–8°C; shelf-life 12–24 months for solutions, 24–36 months for lyophilized material. Analytical testing includes HPLC purity verification (≥95%), HPLC-MS molecular confirmation, amino acid analysis, and microbial sterility/endotoxin testing. Bioassay verification of growth factor activation and cell migration enhancement available upon request. Certificate of Analysis provided with each lot.
RUO Disclaimer
RESEARCH USE ONLY (RUO) This product is intended exclusively for laboratory research and is not approved for clinical use or human/animal administration. Not manufactured for pharmaceutical use. Users assume responsibility for suitability determination, proper storage, safety compliance, and regulatory adherence. Institutional approval (IACUC, IRB) may be required. Information provided is for research reference only and does not constitute medical advice or therapeutic claims.
RUO Disclaimer
RESEARCH USE ONLY (RUO) This product is intended exclusively for laboratory research and is not approved for clinical use or human/animal administration. Not manufactured for pharmaceutical use. Users assume responsibility for suitability determination, proper storage, safety compliance, and regulatory adherence. Institutional approval (IACUC, IRB) may be required. Information provided is for research reference only and does not constitute medical advice or therapeutic claims.
RUO Disclaimer
RESEARCH USE ONLY (RUO) This product is intended exclusively for laboratory research and is not approved for clinical use or human/animal administration. Not manufactured for pharmaceutical use. Users assume responsibility for suitability determination, proper storage, safety compliance, and regulatory adherence. Institutional approval (IACUC, IRB) may be required. Information provided is for research reference only and does not constitute medical advice or therapeutic claims.


$
129 AUD
BPC-157

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© Standard BioLabs. All rights reserved.
All products on this site are designated for Research Use Only and are supplied solely for laboratory, analytical, or scientific research purposes by qualified professionals. Products are not intended for human or animal use, and no diagnostic, therapeutic, or clinical use is intended or implied.
Standard BioLabs is a chemical supplier. Peptide Sciences is not a compounding pharmacy or chemical compounding facility as defined under 503A of the Federal Food, Drug, and Cosmetic Act. Peptide Sciences is not an outsourcing facility as defined under 503B of the Federal Food, Drug, and Cosmetic Act.

We are committed to supporting all research customers with consistent standards and professional care.

Information
Buy Peptides
Peptide Capsules
Purchase Peptides
Peptide Blends
Bioregulators
IGF-1 Proteins
Cosmetic Peptides
Melanotan Peptides
Legal
Privacy Policy
Terms of use
Shipping & Payments
Reward Program Terms
Refunds & Returns
Accessibility Statement
Contact Us
Subscribe
Subscribe to stay updated at every moment about all our news and product drops.




Terms of Service
Refund Policy
Privacy Policy
Promotional Terms
All products on this site are designated for Research Use Only and are supplied solely for laboratory, analytical, or scientific research purposes by qualified professionals. Products are not intended for human or animal use, and no diagnostic, therapeutic, or clinical use is intended or implied.
Standard BioLabs is a chemical supplier. Peptide Sciences is not a compounding pharmacy or chemical compounding facility as defined under 503A of the Federal Food, Drug, and Cosmetic Act. Peptide Sciences is not an outsourcing facility as defined under 503B of the Federal Food, Drug, and Cosmetic Act.
© Standard BioLabs. All rights reserved.

We are committed to supporting all research customers with consistent standards and professional care.

Information
Buy Peptides
Peptide Capsules
Purchase Peptides
Peptide Blends
Bioregulators
IGF-1 Proteins
Cosmetic Peptides
Melanotan Peptides
Legal
Privacy Policy
Terms of use
Shipping & Payments
Reward Program Terms
Refunds & Returns
Accessibility Statement
Contact Us
Subscribe
Subscribe to stay updated at every moment about all our news and product drops.




Terms of Service
Refund Policy
Privacy Policy
Promotional Terms
© Standard BioLabs. All rights reserved.
All products on this site are designated for Research Use Only and are supplied solely for laboratory, analytical, or scientific research purposes by qualified professionals. Products are not intended for human or animal use, and no diagnostic, therapeutic, or clinical use is intended or implied.
Standard BioLabs is a chemical supplier. Peptide Sciences is not a compounding pharmacy or chemical compounding facility as defined under 503A of the Federal Food, Drug, and Cosmetic Act. Peptide Sciences is not an outsourcing facility as defined under 503B of the Federal Food, Drug, and Cosmetic Act.




