GLP-2 1-33 Rat/Preproglucagon 126-158/Glp 2 Rat - Highly Purified Peptide for Rat Models

REF #: 3199657
Procurenet
Short description

GLP-2 1-33 Rat/Preproglucagon 126-158/Glp 2 Rat – Highly Purified Peptide for Rat Models

  • Derived from proglucagon
  • 33 amino acid peptide
  • Highly purified with 95% purity (HPLC)
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  • Procurenet Team Tshim Sha Tsui
    Hong Kong Hong Kong 3 years
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Description

Glycogen-like peptide-2 (GLP-2) is a highly purified peptide derived from proglucagon. It is composed of 33 amino acids and is specifically formulated for use with rat models. This particular GLP-2 variant is known as GLP-2 1-33 rat / Preproglucagon 126-158 / Glp 2 rat and has a purity level of 95% as determined by high-performance liquid chromatography (HPLC).

GLP-2 is a biologically active peptide hormone that plays a crucial role in regulating various physiological processes, particularly in the gastrointestinal system. It exerts its effects through interactions with the GLP-2 receptor, triggering a cascade of intracellular signaling events that regulate cell growth, survival, and metabolism.

The innovative composition of GLP-2 1-33 rat / Preproglucagon 126-158 / Glp 2 rat ensures its efficacy and reliability in experimental studies. This peptide product provides researchers with a valuable tool to investigate the specific effects of GLP-2 on various cellular processes and study its potential therapeutic applications.

Key Features:

  • High purity: GLP-2 1-33 rat / Preproglucagon 126-158 / Glp 2 rat is manufactured to 95% purity (HPLC), ensuring the absence of impurities that could interfere with experimental results.
  • Biologically active: The peptide is biologically active and possesses the ability to engage with the GLP-2 receptor, leading to downstream signaling pathways.
  • Rat model compatibility: This specific GLP-2 variant is designed for use in experiments involving rat models, allowing researchers to investigate the unique impacts of GLP-2 on rat physiology and pathology.
  • Potent stimulus: GLP-2 has been shown to exert potent stimulatory effects on intestinal epithelial cell growth and nutrient absorption, making it an ideal molecule to study gastrointestinal physiology.
  • Cellular regulation: By activating the GLP-2 receptor, GLP-2 1-33 rat / Preproglucagon 126-158 / Glp 2 rat participates in the regulation of cellular processes such as proliferation, survival, and metabolism.

Experimental Applications:

  • In vitro studies: Researchers can employ this peptide to investigate the effects of GLP-2 on various cell types, such as intestinal epithelial cells or pancreatic beta cells.
  • In vivo studies: By administering GLP-2 1-33 rat / Preproglucagon 126-158 / Glp 2 rat to rat models, scientists can explore the physiological impact of GLP-2 in a living organism, providing valuable insights into its role in gastrointestinal homeostasis.
  • Therapeutic potential: GLP-2 has shown promise as a potential therapy for gastrointestinal disorders, such as inflammatory bowel disease, irritable bowel syndrome, and short bowel syndrome. Researchers can use GLP-2 1-33 rat / Preproglucagon 126-158 / Glp 2 rat to investigate its therapeutic potential and optimize treatment protocols.
  • Cell signaling studies: The activation of the GLP-2 receptor by GLP-2 1-33 rat / Preproglucagon 126-158 / Glp 2 rat provides an excellent model to study the intricate signaling pathways involved in cellular responses to GLP-2.
  • Metabolic syndrome research: GLP-2 has been associated with metabolic regulation and its potential role in managing metabolic disorders such as obesity and diabetes. GLP-2 1-33 rat / Preproglucagon 126-158 / Glp 2 rat allows scientists to delve into these complex metabolic pathways.

In summary, GLP-2 1-33 rat / Preproglucagon 126-158 / Glp 2 rat is a high-purity peptide specifically designed for use with rat models. With its exceptional purity, biologically active properties, and compatibility with rat studies, this peptide serves as an ideal tool for researchers exploring the intricacies of GLP-2 and its role in various physiological and pathological processes. Its potential therapeutic applications highlight its significance in the field of gastrointestinal research and metabolic regulation.

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