N-Acetyl-3',5'-O-(1,1,3,3-tetraisopropyl-1,3-disiloxanediyl)adenosine

95%

  • Product Code: 43840
  CAS:    828247-65-0
Molecular Weight: 551.78 g./mol Molecular Formula: C₂₄H₄₁N₅O₆Si₂
EC Number: MDL Number: MFCD28016486
Melting Point: Boiling Point:
Density: 1.29±0.1 g/cm3(Predicted) Storage Condition: 2-8℃
Product Description: This compound is primarily utilized in the synthesis of modified nucleosides and nucleotides, playing a crucial role in the development of oligonucleotides for research and therapeutic applications. It serves as a protected intermediate in organic synthesis, particularly in the preparation of RNA analogs, where the tetraisopropyldisiloxane (TIPDS) group safeguards the 3' and 5' hydroxyl positions during chemical reactions. This protection allows for selective modification of the adenosine molecule, enabling the creation of specialized nucleosides used in studies involving gene expression, antisense technology, and the development of antiviral or anticancer agents. Its application is significant in the field of medicinal chemistry and biochemistry for designing molecules with enhanced stability and specificity.
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Size (g) Availability Price Quantity
25.000 10-20 days $1,899.45
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N-Acetyl-3',5'-O-(1,1,3,3-tetraisopropyl-1,3-disiloxanediyl)adenosine
This compound is primarily utilized in the synthesis of modified nucleosides and nucleotides, playing a crucial role in the development of oligonucleotides for research and therapeutic applications. It serves as a protected intermediate in organic synthesis, particularly in the preparation of RNA analogs, where the tetraisopropyldisiloxane (TIPDS) group safeguards the 3' and 5' hydroxyl positions during chemical reactions. This protection allows for selective modification of the adenosine molecule, enabling the creation of specialized nucleosides used in studies involving gene expression, antisense technology, and the development of antiviral or anticancer agents. Its application is significant in the field of medicinal chemistry and biochemistry for designing molecules with enhanced stability and specificity.
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