Sodium iodoacetate

98%

  • Product Code: 98248
  Alias:    Sodium Iodoacetate; Sodium Iodoacetate, Sodium Iodoacetate
  CAS:    305-53-3
Molecular Weight: 207.93 g./mol Molecular Formula: C₂H₂INaO₂
EC Number: 206-165-7 MDL Number: MFCD00002686
Melting Point: 208 °C (dec.)(lit.) Boiling Point:
Density: Storage Condition: -20°C
Product Description: Sodium iodoacetate is primarily used in biochemical research as an enzyme inhibitor. It effectively inhibits glycolysis by targeting glyceraldehyde-3-phosphate dehydrogenase (GAPDH), a key enzyme in the glycolytic pathway. This property makes it a valuable tool for studying cellular metabolism and energy production processes. Additionally, it is employed in cancer research to investigate the role of glycolysis in tumor cell survival and proliferation. In molecular biology, sodium iodoacetate is used to alkylate cysteine residues in proteins, aiding in the study of protein structure and function. Its applications also extend to the field of toxicology, where it is used to model metabolic dysfunction and study the effects of impaired energy metabolism in cells.
Product Specification:
Test Specification
PURITYNT 97.5 102.5%
INFRARED SPECTRUM Conforms to Structure
SOLUBILITY100mgmlwater CLEAR
X-RAY DIFFRACTION Conforms to Structure
APPEARANCE white to light yellow powder or crystal
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
1.000 10-20 days ฿440.00
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5.000 10-20 days ฿1,320.00
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25.000 10-20 days ฿4,390.00
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100.000 10-20 days ฿16,920.00
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Sodium iodoacetate
Sodium iodoacetate is primarily used in biochemical research as an enzyme inhibitor. It effectively inhibits glycolysis by targeting glyceraldehyde-3-phosphate dehydrogenase (GAPDH), a key enzyme in the glycolytic pathway. This property makes it a valuable tool for studying cellular metabolism and energy production processes. Additionally, it is employed in cancer research to investigate the role of glycolysis in tumor cell survival and proliferation. In molecular biology, sodium iodoacetate is used to alkylate cysteine residues in proteins, aiding in the study of protein structure and function. Its applications also extend to the field of toxicology, where it is used to model metabolic dysfunction and study the effects of impaired energy metabolism in cells.
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