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BPC-157

For Research Purposes Only and Not Intended For Human Consumption

$62.00

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Description

Overview

BPC-157 is a synthetic peptide derived from a sequence originally identified in a gastric protein known as Body Protection Compound (BPC). In laboratory environments, this peptide has attracted attention for its role in cellular signaling research and studies involving tissue response mechanisms.

Scientific investigation of BPC-157 has primarily focused on cellular communication pathways, peptide signaling interactions, and biochemical processes related to tissue and vascular regulation. Researchers have examined its behavior in controlled laboratory models to better understand peptide mediated signaling processes within biological systems.

This compound is supplied as a lyophilized research peptide intended for laboratory analysis and scientific investigation.

Research Applications

BPC-157 has been explored in a variety of laboratory research environments. Areas of investigation include:

  • Cellular signaling pathway research
  • Tissue response and repair mechanism studies
  • Angiogenic pathway exploration
  • Peptide mediated communication within biological systems
  • Gastrointestinal peptide signaling research

These research contexts aim to better understand the peptide’s role within complex biological signaling networks.

Mechanism and Pathway Context

Research has investigated the interaction of BPC-157 with several biological signaling pathways. Studies have explored its relationship with cellular communication systems that regulate tissue response and vascular signaling.

Laboratory investigations have examined the peptide’s interaction with nitric oxide related pathways and molecular signaling systems associated with cellular migration and angiogenic processes. Additional research has explored its relationship with growth factor signaling and endothelial cell communication mechanisms.

These investigations focus on understanding how peptide sequences may influence biochemical signaling events within controlled experimental environments.

Research Summary

BPC-157 was initially identified during investigations into gastric protective peptides. Subsequent laboratory studies have expanded interest in this peptide due to its stability and interaction with various cellular signaling pathways.

Scientific literature has explored the peptide’s behavior in laboratory models studying tissue response, vascular signaling mechanisms, and peptide mediated communication networks. Researchers have also examined its stability under various experimental conditions and its interaction with molecular signaling systems.

Ongoing research continues to investigate how this peptide may interact with complex biological pathways involved in cellular communication and biochemical regulation.

Product Specifications

  • Peptide Name: BPC-157
  • Amount per vial: 10 mg
  • Purity: ≥99%
  • Format: Lyophilized powder
  • Research classification: Laboratory research peptide
  • Production method: Synthetic peptide synthesis

Storage and Handling

For laboratory research stability, this compound should be stored refrigerated following reconstitution.

Proper storage conditions help maintain peptide stability during laboratory analysis and experimental procedures.

Research Use Disclaimer

FOR RESEARCH USE ONLY.
This product is intended strictly for laboratory research purposes. It is not intended for human or veterinary use.

Scientific Background

BPC-157 is a peptide fragment derived from a naturally occurring gastric protein known as Body Protection Compound. This protein was initially identified during investigations into peptides associated with gastric tissue environments.

Researchers became interested in this peptide fragment due to its stability and its interaction with several cellular signaling systems observed in laboratory models. Unlike many peptides that degrade rapidly, BPC-157 has demonstrated relative stability under a range of experimental conditions.

This stability has contributed to its use in laboratory research exploring peptide signaling mechanisms and biological pathway interactions.

Key Research Areas

Cellular Signaling Research

Laboratory studies have explored the involvement of BPC-157 in cellular communication systems that regulate biological responses to environmental stimuli. Research in this area focuses on understanding how peptide signals influence cellular behavior within experimental models.

Vascular Signaling Research

Some research has examined the peptide’s relationship with pathways associated with endothelial signaling and vascular communication networks. These investigations aim to understand how peptides interact with signaling molecules involved in vascular regulation.

Tissue Response Mechanism Studies

Experimental studies have explored the role of peptide signaling in models examining tissue response processes. These studies investigate how signaling molecules interact with cellular structures during experimental biological events.

Gastrointestinal Peptide Research

Due to its origin in gastric protein research, BPC-157 has also been studied in laboratory models exploring peptide activity within gastrointestinal cellular environments.

Pathway Interaction Overview

Research has examined the interaction of BPC-157 with several molecular signaling systems. These investigations have explored its relationship with nitric oxide signaling pathways, endothelial communication networks, and molecular pathways involved in cellular regulation.

Studies have also explored the peptide’s interaction with growth factor related signaling systems and cellular communication mechanisms involved in tissue signaling responses.

These investigations aim to understand how peptide fragments may influence biochemical signaling networks within controlled experimental models.

Literature Overview

Scientific literature related to BPC-157 spans several research areas including peptide stability, cellular signaling pathways, vascular communication mechanisms, and gastrointestinal peptide activity.

Research publications have examined the peptide within controlled laboratory models designed to explore biochemical signaling systems and peptide mediated cellular communication. Ongoing studies continue to investigate the molecular behavior of BPC-157 and its interaction with biological pathways.

References

Research related to BPC-157 can be found through scientific databases and academic publications, including:

  1. Sikiric P, Seiwerth S, Rucman R, et al. Stable gastric pentadecapeptide BPC 157: novel therapy in gastrointestinal tract. Current Pharmaceutical Design. 2011;17(16):1612-1632. PMID: 21548867.
  2. Sikiric P, Seiwerth S, Rucman R, et al. Focus on ulcerative colitis: stable gastric pentadecapeptide BPC 157. Current Medicinal Chemistry. 2012;19(1):126-132. PMID: 22300081.
  3. Chang CH, Tsai WC, Lin MS, Hsu YH, Pang JH. The promoting effect of pentadecapeptide BPC 157 on tendon healing involves tendon outgrowth, cell survival, and cell migration. Journal of Applied Physiology. 2011;110(3):774-780. PMID: 21148343.
  4. Cerovecki T, Bojanic I, Brcic L, et al. Pentadecapeptide BPC 157 (PL 14736) improves ligament healing in the rat. Journal of Orthopaedic Research. 2010;28(9):1155-1161. PMID: 20225291.

Reviews

There are no reviews yet.

Only logged in customers who have purchased this product may leave a review.

Overview

BPC-157 is a synthetic peptide derived from a sequence originally identified in a gastric protein known as Body Protection Compound (BPC). In laboratory environments, this peptide has attracted attention for its role in cellular signaling research and studies involving tissue response mechanisms.

Scientific investigation of BPC-157 has primarily focused on cellular communication pathways, peptide signaling interactions, and biochemical processes related to tissue and vascular regulation. Researchers have examined its behavior in controlled laboratory models to better understand peptide mediated signaling processes within biological systems.

This compound is supplied as a lyophilized research peptide intended for laboratory analysis and scientific investigation.

Research Applications

BPC-157 has been explored in a variety of laboratory research environments. Areas of investigation include:

  • Cellular signaling pathway research
  • Tissue response and repair mechanism studies
  • Angiogenic pathway exploration
  • Peptide mediated communication within biological systems
  • Gastrointestinal peptide signaling research

These research contexts aim to better understand the peptide’s role within complex biological signaling networks.

Mechanism and Pathway Context

Research has investigated the interaction of BPC-157 with several biological signaling pathways. Studies have explored its relationship with cellular communication systems that regulate tissue response and vascular signaling.

Laboratory investigations have examined the peptide’s interaction with nitric oxide related pathways and molecular signaling systems associated with cellular migration and angiogenic processes. Additional research has explored its relationship with growth factor signaling and endothelial cell communication mechanisms.

These investigations focus on understanding how peptide sequences may influence biochemical signaling events within controlled experimental environments.

Research Summary

BPC-157 was initially identified during investigations into gastric protective peptides. Subsequent laboratory studies have expanded interest in this peptide due to its stability and interaction with various cellular signaling pathways.

Scientific literature has explored the peptide’s behavior in laboratory models studying tissue response, vascular signaling mechanisms, and peptide mediated communication networks. Researchers have also examined its stability under various experimental conditions and its interaction with molecular signaling systems.

Ongoing research continues to investigate how this peptide may interact with complex biological pathways involved in cellular communication and biochemical regulation.

Product Specifications

  • Peptide Name: BPC-157
  • Amount per vial: 10 mg
  • Purity: ≥99%
  • Format: Lyophilized powder
  • Research classification: Laboratory research peptide
  • Production method: Synthetic peptide synthesis

Storage and Handling

For laboratory research stability, this compound should be stored refrigerated following reconstitution.

Proper storage conditions help maintain peptide stability during laboratory analysis and experimental procedures.

Research Use Disclaimer

FOR RESEARCH USE ONLY.
This product is intended strictly for laboratory research purposes. It is not intended for human or veterinary use.

Scientific Background

BPC-157 is a peptide fragment derived from a naturally occurring gastric protein known as Body Protection Compound. This protein was initially identified during investigations into peptides associated with gastric tissue environments.

Researchers became interested in this peptide fragment due to its stability and its interaction with several cellular signaling systems observed in laboratory models. Unlike many peptides that degrade rapidly, BPC-157 has demonstrated relative stability under a range of experimental conditions.

This stability has contributed to its use in laboratory research exploring peptide signaling mechanisms and biological pathway interactions.

Key Research Areas

Cellular Signaling Research

Laboratory studies have explored the involvement of BPC-157 in cellular communication systems that regulate biological responses to environmental stimuli. Research in this area focuses on understanding how peptide signals influence cellular behavior within experimental models.

Vascular Signaling Research

Some research has examined the peptide’s relationship with pathways associated with endothelial signaling and vascular communication networks. These investigations aim to understand how peptides interact with signaling molecules involved in vascular regulation.

Tissue Response Mechanism Studies

Experimental studies have explored the role of peptide signaling in models examining tissue response processes. These studies investigate how signaling molecules interact with cellular structures during experimental biological events.

Gastrointestinal Peptide Research

Due to its origin in gastric protein research, BPC-157 has also been studied in laboratory models exploring peptide activity within gastrointestinal cellular environments.

Pathway Interaction Overview

Research has examined the interaction of BPC-157 with several molecular signaling systems. These investigations have explored its relationship with nitric oxide signaling pathways, endothelial communication networks, and molecular pathways involved in cellular regulation.

Studies have also explored the peptide’s interaction with growth factor related signaling systems and cellular communication mechanisms involved in tissue signaling responses.

These investigations aim to understand how peptide fragments may influence biochemical signaling networks within controlled experimental models.

Literature Overview

Scientific literature related to BPC-157 spans several research areas including peptide stability, cellular signaling pathways, vascular communication mechanisms, and gastrointestinal peptide activity.

Research publications have examined the peptide within controlled laboratory models designed to explore biochemical signaling systems and peptide mediated cellular communication. Ongoing studies continue to investigate the molecular behavior of BPC-157 and its interaction with biological pathways.

References

Research related to BPC-157 can be found through scientific databases and academic publications, including:

  1. Sikiric P, Seiwerth S, Rucman R, et al. Stable gastric pentadecapeptide BPC 157: novel therapy in gastrointestinal tract. Current Pharmaceutical Design. 2011;17(16):1612-1632. PMID: 21548867.
  2. Sikiric P, Seiwerth S, Rucman R, et al. Focus on ulcerative colitis: stable gastric pentadecapeptide BPC 157. Current Medicinal Chemistry. 2012;19(1):126-132. PMID: 22300081.
  3. Chang CH, Tsai WC, Lin MS, Hsu YH, Pang JH. The promoting effect of pentadecapeptide BPC 157 on tendon healing involves tendon outgrowth, cell survival, and cell migration. Journal of Applied Physiology. 2011;110(3):774-780. PMID: 21148343.
  4. Cerovecki T, Bojanic I, Brcic L, et al. Pentadecapeptide BPC 157 (PL 14736) improves ligament healing in the rat. Journal of Orthopaedic Research. 2010;28(9):1155-1161. PMID: 20225291.

Reviews

There are no reviews yet.

Only logged in customers who have purchased this product may leave a review.

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