ATN-224

≥98%

  • Product Code: 99580
  CAS:    649749-10-0
Molecular Weight: 432.56 g./mol Molecular Formula: C₁₀H₂₈MoN₂O₂S₄
EC Number: MDL Number:
Melting Point: Boiling Point:
Density: Storage Condition: 2-8℃
Product Description: ATN-224 is primarily utilized in the field of medical research, particularly in studies focusing on cancer treatment. It functions as a copper-zinc superoxide dismutase inhibitor, which plays a crucial role in modulating oxidative stress within cells. By inhibiting this enzyme, ATN-224 can potentially disrupt the redox balance in cancer cells, making them more susceptible to apoptosis or other forms of cell death. This mechanism is particularly explored in the context of prostate cancer, where it has shown promise in preclinical studies. Additionally, ATN-224 is being investigated for its potential to enhance the efficacy of other cancer therapies, such as chemotherapy and radiation, by sensitizing tumor cells to these treatments. Its application extends to understanding the role of oxidative stress in various other diseases, providing insights that could lead to the development of novel therapeutic strategies.
Product Specification:
Test Specification
APPEARANCE Powder
PURITY 97.5-100
Infrared spectrum Conforms to Structure
NMR Conforms to Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.002 10-20 days $628.43
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0.005 10-20 days $1,264.72
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ATN-224
ATN-224 is primarily utilized in the field of medical research, particularly in studies focusing on cancer treatment. It functions as a copper-zinc superoxide dismutase inhibitor, which plays a crucial role in modulating oxidative stress within cells. By inhibiting this enzyme, ATN-224 can potentially disrupt the redox balance in cancer cells, making them more susceptible to apoptosis or other forms of cell death. This mechanism is particularly explored in the context of prostate cancer, where it has shown promise in preclinical studies. Additionally, ATN-224 is being investigated for its potential to enhance the efficacy of other cancer therapies, such as chemotherapy and radiation, by sensitizing tumor cells to these treatments. Its application extends to understanding the role of oxidative stress in various other diseases, providing insights that could lead to the development of novel therapeutic strategies.
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