EUK 134

99%

  • Product Code: 100496
  CAS:    81065-76-1
Molecular Weight: 416.74 g./mol Molecular Formula: C₁₈H₁₈ClMnN₂O₄
EC Number: MDL Number:
Melting Point: Boiling Point:
Density: Storage Condition: -20℃
Product Description: EUK 134 is primarily utilized in research and development within the fields of biochemistry and medicine due to its potent antioxidant properties. It is often employed in studies focused on understanding and mitigating oxidative stress, which is implicated in various diseases such as neurodegenerative disorders, cardiovascular diseases, and aging. Researchers use EUK 134 to explore its potential in protecting cells from damage caused by reactive oxygen species (ROS), thereby aiding in the development of therapeutic strategies. Additionally, it is investigated for its role in enhancing the efficacy of other treatments by reducing oxidative damage, particularly in cancer therapy. Its application extends to the study of mitochondrial function, where it helps in elucidating the mechanisms of cellular energy production and stress responses.
Product Specification:
Test Specification
Appearance Faint To Very Dark Brown Powder
Purity (%) 98.5-100
Infrared Spectrum Conforms To Structure
NMR Conforms To Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.005 10-20 days $114.20
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0.025 10-20 days $295.69
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0.100 10-20 days $759.15
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0.500 10-20 days $1,837.66
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EUK 134
EUK 134 is primarily utilized in research and development within the fields of biochemistry and medicine due to its potent antioxidant properties. It is often employed in studies focused on understanding and mitigating oxidative stress, which is implicated in various diseases such as neurodegenerative disorders, cardiovascular diseases, and aging. Researchers use EUK 134 to explore its potential in protecting cells from damage caused by reactive oxygen species (ROS), thereby aiding in the development of therapeutic strategies. Additionally, it is investigated for its role in enhancing the efficacy of other treatments by reducing oxidative damage, particularly in cancer therapy. Its application extends to the study of mitochondrial function, where it helps in elucidating the mechanisms of cellular energy production and stress responses.
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