Bombesin acetate salt hydrate

≥97% (HPLC)

  • Product Code: 110564
  Alias:    bombesin,
  CAS:    31362-50-2
Molecular Weight: 1619.85 g./mol Molecular Formula: C₇₁H₁₁₀N₂₄O₁₈S
EC Number: MDL Number: MFCD00167514
Melting Point: Boiling Point:
Density: Storage Condition: -20°C
Product Description: Bombesin acetate salt hydrate is widely used in biomedical research due to its role as a neuropeptide that interacts with G-protein-coupled receptors. It is particularly valuable in studies focused on understanding the regulation of appetite, gastrointestinal motility, and the release of gastrin and other hormones. Researchers utilize it to investigate its effects on cancer cell proliferation, as bombesin receptors are often overexpressed in certain tumors, such as those in the prostate, breast, and lung. Additionally, it serves as a tool in neuropharmacology to explore its involvement in stress responses and behavioral regulation. Its applications extend to experimental models for studying peptide-receptor interactions and developing targeted therapies for receptor-associated diseases.
Product Specification:
Test Specification
Acetate By Ionx 1.5-12.5
Peptide Content By Amino Acid Analysis 75-100
Purity (HPLC) 97-100
Water By Karl Fischer 0-9
Appearance WHITE TO LIGHT YELLOW POWDER
Solubility COLORLESS CLEAR, 20 MG/ML, 0.05 M HOAC
SOLUBILITY COLORLESS CLEAR ,20 MG/ML,0.05 M HOAC
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.005 10-20 days ฿5,280.00
+
-
0.025 10-20 days ฿17,080.00
+
-
Bombesin acetate salt hydrate
Bombesin acetate salt hydrate is widely used in biomedical research due to its role as a neuropeptide that interacts with G-protein-coupled receptors. It is particularly valuable in studies focused on understanding the regulation of appetite, gastrointestinal motility, and the release of gastrin and other hormones. Researchers utilize it to investigate its effects on cancer cell proliferation, as bombesin receptors are often overexpressed in certain tumors, such as those in the prostate, breast, and lung. Additionally, it serves as a tool in neuropharmacology to explore its involvement in stress responses and behavioral regulation. Its applications extend to experimental models for studying peptide-receptor interactions and developing targeted therapies for receptor-associated diseases.
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