• Title/Summary/Keyword: Adenosine 5'-phosphonate

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The Synthesis of Diverse Adenosine 5'-phosphonate Analogues as Chain Terminators against Hepatitis C Virus (HCV)

  • Kim, Bo-Seung;Kim, Beom-Tae;Hwang, Ki-Jun
    • Bulletin of the Korean Chemical Society
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    • v.31 no.6
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    • pp.1643-1648
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    • 2010
  • Adenosine 5'-phosphonates have been reported as potential chain terminators against Hepatitis C virus (HCV); therefore, we developed convenient sequences for synthesis of modified adenosine 5'-phosphonates in which the hydroxyl group at 2' or 3'-position of the sugar moiety is substituted with the azido or amino group and the oxymethyl group at the 4'-position is modified by the ethylene or vinyl group. This synthetic sequence can provide six adenosine 5'-phosphonates via one protocol, and is considered to be very efficient and a convenient route of synthesis. An assay of adenosine 5'-phosphonate analogues (1, 2, 3, 4, 5, and 6) against HCV infection is now in progress.

Synthesis and Antiviral Evaluation of 1'-Branched-5'-Norcarbocyclic Adenosine Phosphonic Acid Analogues

  • Oh, Chang-Hyun;Yoo, Kyung-Ho;Hong, Joon-Hee
    • Bulletin of the Korean Chemical Society
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    • v.31 no.9
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    • pp.2473-2478
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    • 2010
  • Novel 1'-methyl-5'-norcarbocyclic adenosine phosphonic acid analogues were synthesized using an acyclic stereoselective route from commercially available 3,3-diethoxy-propan-1-ol 4. The synthesized nucleoside phosphonate 19 and phosphonic acid 21 were subjected to antiviral screening against various viruses.

Synthesis and Anti-HCV Activity of 3',5'-cyclic SATE Phosphonodiester Nucleoside as a Novel Prodrug

  • Liu, Lian Jin;Seo, Rac-Seok;Yoo, Seung-Won;Choi, Jin;Hong, Joon-Hee
    • Bulletin of the Korean Chemical Society
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    • v.31 no.4
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    • pp.915-920
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    • 2010
  • A novel 2',4'-dimethyl carbocyclic adenosine 5'-phosphonic acid analogue (20) was prepared using acyclic stereoselective route from commercially available 4-hydroxybutan-2-one (4). To improve cellular permeability and enhance the anti-HCV activity of this phosphonic acid, a 3',5'-cyclic SATE phosphonodiester nucleoside prodrug (22) was prepared. The synthesized phosphonic nucleoside analogues, (20) and (22), were assayed for their ability to inhibit HCV RNA replication in a subgenomic replicon Huh7 cell line.