AEG 3482

98%

  • Product Code: 107533
  Alias:    6-Phenylimidazo[2,1-B]-1,3,4-thiadiazole-2-sulfonamide
  CAS:    63735-71-7
Molecular Weight: 280.33 g./mol Molecular Formula: C₁₀H₈N₄O₂S₂
EC Number: MDL Number: MFCD02064987
Melting Point: Boiling Point:
Density: Storage Condition: 2-8°C, sealed, dry
Product Description: AEG 3482 is primarily utilized in research settings to study cellular processes, particularly those involving apoptosis and stress responses. It functions as an inhibitor of JNK (c-Jun N-terminal kinase) signaling pathways, which are critical in regulating cell survival and death. By modulating these pathways, it helps researchers understand the mechanisms underlying various diseases, including cancer and neurodegenerative disorders. Additionally, AEG 3482 is employed in experimental models to investigate its potential therapeutic effects in conditions characterized by abnormal cell death or stress-induced damage. Its application is largely confined to preclinical studies, where it aids in elucidating molecular targets and pathways for drug development.
Product Specification:
Test Specification
Appearance Faintly Yellow To Dark Yellow Powder
Purity (%) 97.5-100
Infrared Spectrum Conforms To Structure
NMR Conforms To Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.005 10-20 days ฿4,690.00
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-
0.025 10-20 days ฿17,790.00
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-
0.100 10-20 days ฿57,590.00
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-
AEG 3482
AEG 3482 is primarily utilized in research settings to study cellular processes, particularly those involving apoptosis and stress responses. It functions as an inhibitor of JNK (c-Jun N-terminal kinase) signaling pathways, which are critical in regulating cell survival and death. By modulating these pathways, it helps researchers understand the mechanisms underlying various diseases, including cancer and neurodegenerative disorders. Additionally, AEG 3482 is employed in experimental models to investigate its potential therapeutic effects in conditions characterized by abnormal cell death or stress-induced damage. Its application is largely confined to preclinical studies, where it aids in elucidating molecular targets and pathways for drug development.
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