2'-Fluoro-2'-deoxycytidine

>98.0%(T)

  • Product Code: 126921
  Alias:    2'-Deoxy-2'-fluorocytidine
  CAS:    10212-20-1
Molecular Weight: 245.21 g./mol Molecular Formula: C₉H₁₂FN₃O₄
EC Number: MDL Number: MFCD04221217
Melting Point: 167 °C Boiling Point:
Density: Storage Condition: room temperature
Product Description: This chemical is primarily used in the development of antiviral medications, particularly for treating viral infections such as hepatitis B and certain types of herpes viruses. It acts as a nucleoside analog, which means it mimics the building blocks of viral DNA, disrupting the replication process of the virus. Additionally, it is being researched for its potential application in cancer therapy, where it may inhibit the growth of cancer cells by interfering with their DNA synthesis. Its incorporation into oligonucleotides also makes it valuable in molecular biology for studying gene function and developing gene-based therapies.
Product Specification:
Test Specification
Purity (Nonaqueous Titration) (Calcd. On Anh. Substance) 98
Purity (Nonaqueous Titration) (Calcd. On Anh. Substance) 100 Max
Specific Rotation [Degree 20/D (C=1, Methanol, Calcd. On Anh. Substance)]
Specific Rotation [Degree 20/D (C=1, Methanol, Calcd. On Anh. Substance)]
Specific Rotation [Degree 20/D (C=1, Methanol, Calcd. On Anh. Substance)] 77-83
Water By Karl Fischer 0-10%
Appearance White Or Off-White Powder
Infrared Spectrum Conforms To Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
1.000 10-20 days ฿2,800.00
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-
5.000 10-20 days ฿12,490.00
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-
2'-Fluoro-2'-deoxycytidine
This chemical is primarily used in the development of antiviral medications, particularly for treating viral infections such as hepatitis B and certain types of herpes viruses. It acts as a nucleoside analog, which means it mimics the building blocks of viral DNA, disrupting the replication process of the virus. Additionally, it is being researched for its potential application in cancer therapy, where it may inhibit the growth of cancer cells by interfering with their DNA synthesis. Its incorporation into oligonucleotides also makes it valuable in molecular biology for studying gene function and developing gene-based therapies.
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