APY29

≥99%

  • Product Code: 63177
  CAS:    1216665-49-4
Molecular Weight: 332.36 g./mol Molecular Formula: C₁₇H₁₆N₈
EC Number: MDL Number:
Melting Point: Boiling Point:
Density: Storage Condition: 2-8℃
Product Description: APY29 is primarily used in biochemical and pharmacological research as a potent and selective inhibitor of the IRE1α-XBP1 pathway. This pathway is a critical component of the unfolded protein response (UPR) in cells, which is activated under conditions of endoplasmic reticulum (ER) stress. By inhibiting IRE1α, APY29 helps researchers study the role of this pathway in various cellular processes, including apoptosis, inflammation, and autophagy. It is particularly valuable in understanding the mechanisms underlying diseases such as cancer, neurodegenerative disorders, and diabetes, where ER stress and the UPR play significant roles. Additionally, APY29 is utilized in drug discovery efforts to identify potential therapeutic targets for conditions linked to dysregulated ER stress responses.
Product Specification:
Test Specification
APPEARANCE White to Beige to Light Brown Solid
PURITY 98.5-100
Infrared spectrum Conforms to Structure
NMR Conforms to Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.010 10-20 days ฿9,980.00
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-
0.050 10-20 days ฿25,600.00
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-
APY29
APY29 is primarily used in biochemical and pharmacological research as a potent and selective inhibitor of the IRE1α-XBP1 pathway. This pathway is a critical component of the unfolded protein response (UPR) in cells, which is activated under conditions of endoplasmic reticulum (ER) stress. By inhibiting IRE1α, APY29 helps researchers study the role of this pathway in various cellular processes, including apoptosis, inflammation, and autophagy. It is particularly valuable in understanding the mechanisms underlying diseases such as cancer, neurodegenerative disorders, and diabetes, where ER stress and the UPR play significant roles. Additionally, APY29 is utilized in drug discovery efforts to identify potential therapeutic targets for conditions linked to dysregulated ER stress responses.
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