Timosaponin A-III

Analytical Control

  • Product Code: 239803
  Alias:    Anabola saponin A-Ⅲ;Anabola saponin A3
  CAS:    41059-79-4
Molecular Weight: 740.929 g./mol Molecular Formula: C₃₉H₆₄O₁₃
EC Number: MDL Number:
Melting Point: Boiling Point: 862.8±65.0 °C(Predicted)
Density: 1.36±0.1 g/cm3(Predicted) Storage Condition: Room temperature
Product Description: Timosaponin A-III is widely studied for its potential in cancer therapy due to its ability to induce apoptosis and inhibit proliferation in various cancer cell lines, including breast, colon, and liver cancers. It has shown anti-inflammatory effects by suppressing key inflammatory mediators like NF-κB and COX-2, making it a candidate for treating chronic inflammatory diseases. The compound also exhibits neuroprotective properties, enhancing cognitive function in models of Alzheimer’s disease by reducing amyloid-beta accumulation and oxidative stress in brain cells. Additionally, Timosaponin A-III demonstrates antidiabetic activity by improving insulin sensitivity and glucose uptake in cellular and animal models. Its ability to modulate autophagy and cell cycle progression further supports its role in therapeutic development for metabolic and neurodegenerative disorders.
Sizes / Availability / Pricing:
Size Availability Price Quantity
0.020 10-20 days $260.60
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Timosaponin A-III
Timosaponin A-III is widely studied for its potential in cancer therapy due to its ability to induce apoptosis and inhibit proliferation in various cancer cell lines, including breast, colon, and liver cancers. It has shown anti-inflammatory effects by suppressing key inflammatory mediators like NF-κB and COX-2, making it a candidate for treating chronic inflammatory diseases. The compound also exhibits neuroprotective properties, enhancing cognitive function in models of Alzheimer’s disease by reducing amyloid-beta accumulation and oxidative stress in brain cells. Additionally, Timosaponin A-III demonstrates antidiabetic activity by improving insulin sensitivity and glucose uptake in cellular and animal models. Its ability to modulate autophagy and cell cycle progression further supports its role in therapeutic development for metabolic and neurodegenerative disorders.
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