GYY4137 morpholine salt

98%

  • Product Code: 108479
  CAS:    106740-09-4
Molecular Weight: 376.47 g./mol Molecular Formula: C₁₁H₁₆NO₂PS₂C₄H₉NO
EC Number: MDL Number:
Melting Point: Boiling Point:
Density: Storage Condition: -20°C, airtight, dry
Product Description: GYY4137 morpholine salt is widely used in research settings to study the biological effects of hydrogen sulfide (H₂S), a gasotransmitter involved in various physiological processes. It serves as a slow-releasing H₂S donor, making it valuable for investigating the role of H₂S in cardiovascular health, inflammation, and cellular signaling. Researchers utilize it to explore its potential therapeutic applications, such as protecting against ischemia-reperfusion injury, reducing oxidative stress, and modulating blood pressure. Additionally, it is employed in studies related to cancer, where H₂S is examined for its dual role in both promoting and inhibiting tumor growth. Its controlled release properties make it a preferred tool for mimicking physiological H₂S levels in experimental models.
Product Specification:
Test Specification
Appearance White To Tan Powder
Purity (%) 97.5-100
Infrared Spectrum Conforms To Structure
NMR Conforms To Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.010 10-20 days ฿33,160.00
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GYY4137 morpholine salt
GYY4137 morpholine salt is widely used in research settings to study the biological effects of hydrogen sulfide (H₂S), a gasotransmitter involved in various physiological processes. It serves as a slow-releasing H₂S donor, making it valuable for investigating the role of H₂S in cardiovascular health, inflammation, and cellular signaling. Researchers utilize it to explore its potential therapeutic applications, such as protecting against ischemia-reperfusion injury, reducing oxidative stress, and modulating blood pressure. Additionally, it is employed in studies related to cancer, where H₂S is examined for its dual role in both promoting and inhibiting tumor growth. Its controlled release properties make it a preferred tool for mimicking physiological H₂S levels in experimental models.
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