Phenylbiguanide

≥98%

  • Product Code: 123121
  CAS:    102-02-3
Molecular Weight: 177.21 g./mol Molecular Formula: C₈H₁₁N₅
EC Number: MDL Number: MFCD00179077
Melting Point: 140-146°C Boiling Point:
Density: Storage Condition: room temperature
Product Description: Phenylbiguanide is primarily used in pharmacological research as a selective agonist for the 5-HT3 receptor, a subtype of serotonin receptor. It is often employed in experimental studies to investigate the role of 5-HT3 receptors in the nervous system, particularly in relation to neurotransmitter release, neuronal excitability, and pain pathways. Its ability to activate these receptors makes it a valuable tool for studying conditions such as nausea, vomiting, and certain psychiatric disorders. Additionally, phenylbiguanide is used in in vitro and in vivo models to explore potential therapeutic agents targeting the 5-HT3 receptor. Its application extends to electrophysiological studies, where it helps in understanding the mechanisms of receptor activation and ion channel function.
Product Specification:
Test Specification
Appearance White To Light-Yellow Powder Or Crystals
Purity (%) 97.5-100
Infrared Spectrum Conforms To Structure
NMR Conforms To Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
1.000 10-20 days ฿1,390.00
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-
5.000 10-20 days ฿3,490.00
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-
25.000 10-20 days ฿13,590.00
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Phenylbiguanide
Phenylbiguanide is primarily used in pharmacological research as a selective agonist for the 5-HT3 receptor, a subtype of serotonin receptor. It is often employed in experimental studies to investigate the role of 5-HT3 receptors in the nervous system, particularly in relation to neurotransmitter release, neuronal excitability, and pain pathways. Its ability to activate these receptors makes it a valuable tool for studying conditions such as nausea, vomiting, and certain psychiatric disorders. Additionally, phenylbiguanide is used in in vitro and in vivo models to explore potential therapeutic agents targeting the 5-HT3 receptor. Its application extends to electrophysiological studies, where it helps in understanding the mechanisms of receptor activation and ion channel function.
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