6-Aminonicotinamide

99%

  • Product Code: 120525
  Alias:    6-aminonicotinamide; 6-amino-3-pyridinecarboxamide, 2-aminopyridine-5-carboxamide
  CAS:    329-89-5
Molecular Weight: 137.14 g./mol Molecular Formula: C₆H₇N₃O
EC Number: 206-349-7 MDL Number: MFCD00006327
Melting Point: 245-248 °C(lit.) Boiling Point:
Density: Storage Condition: room temperature
Product Description: 6-Aminonicotinamide is primarily used in research settings to study cellular metabolism and stress responses. It acts as an inhibitor of the pentose phosphate pathway, which is crucial for generating NADPH and ribose-5-phosphate. By blocking this pathway, it helps researchers investigate the effects of oxidative stress on cells and tissues. This compound is also utilized in cancer research to explore its potential in sensitizing cancer cells to radiation and chemotherapy, as it disrupts the metabolic processes that cancer cells rely on for survival. Additionally, 6-Aminonicotinamide is employed in studies related to neurodegenerative diseases to understand the role of metabolic dysfunction in neuronal cell death. Its ability to induce metabolic stress makes it a valuable tool in experimental biology and pharmacology.
Product Specification:
Test Specification
Purity (Nonaqueous Tieration) 98.5-101.5
Solubility In Alcohol Pass
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
1.000 10-20 days ฿1,800.00
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5.000 10-20 days ฿7,980.00
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6-Aminonicotinamide
6-Aminonicotinamide is primarily used in research settings to study cellular metabolism and stress responses. It acts as an inhibitor of the pentose phosphate pathway, which is crucial for generating NADPH and ribose-5-phosphate. By blocking this pathway, it helps researchers investigate the effects of oxidative stress on cells and tissues. This compound is also utilized in cancer research to explore its potential in sensitizing cancer cells to radiation and chemotherapy, as it disrupts the metabolic processes that cancer cells rely on for survival. Additionally, 6-Aminonicotinamide is employed in studies related to neurodegenerative diseases to understand the role of metabolic dysfunction in neuronal cell death. Its ability to induce metabolic stress makes it a valuable tool in experimental biology and pharmacology.
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