Literature DB >> 17037359

[The molecular basis of resistance to anti-influenza drugs].

Shuji Hatakeyama1, Yoshihiro Kawaoka.   

Abstract

Influenza A viruses resistant to adamantanes(amantadine and rimantadine) have drastically increased in the last few years. Moreover, these adamantane-resistant viruses have acquired resistance without compromising viral pathogenicity and transmissibility. Viruses resistant to the other anti-influenza drugs, neuraminidase (NA) inhibitors, have also been shown to emerge at a rate higher than previously thought. In addition, several recent observations suggest that human-to-human transmission of variants resistant to NA inhibitors may have occurred, contrary to earlier predictions that such variants were much less likely to be transmitted. Although the prevalence of NA inhibitor resistants remains low, surveillance of drug-resistant influenza viruses in communities is essential. Here, we review antiviral resistance in influenza viruses and the molecular mechanisms of the acquisition of resistance to these drugs.

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Year:  2006        PMID: 17037359

Source DB:  PubMed          Journal:  Nihon Rinsho        ISSN: 0047-1852


  3 in total

1.  Structural insight into RNA synthesis by influenza D polymerase.

Authors:  Qi Peng; Yuqian Liu; Ruchao Peng; Min Wang; Wei Yang; Hao Song; Yuhai Chen; Sheng Liu; Min Han; Xinzheng Zhang; Peiyi Wang; Jinghua Yan; Buchang Zhang; Jianxun Qi; Tao Deng; George F Gao; Yi Shi
Journal:  Nat Microbiol       Date:  2019-06-17       Impact factor: 17.745

2.  Anti-influenza virus effect of aqueous extracts from dandelion.

Authors:  Wen He; Huamin Han; Wei Wang; Bin Gao
Journal:  Virol J       Date:  2011-12-14       Impact factor: 4.099

3.  Increased nitric oxide production and GFAP expression in the brains of influenza A/NWS virus infected mice.

Authors:  Chiako Watanabe; Hisashi Kawashima; Kouji Takekuma; Akinori Hoshika; Yasuo Watanabe
Journal:  Neurochem Res       Date:  2007-12-14       Impact factor: 3.996

  3 in total

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