Inhibition of Neuraminidase Inhibitor-Resistant Influenza Virus by DAS181, a Novel Sialidase Fusion Protein

被引:65
作者
Triana-Baltzer, Gallen B.
Gubareva, Larisa V.
Klimov, Alexander I.
Wurtman, David F.
Moss, Ronald B.
Hedlund, Maria
Larson, Jeffrey L.
Belshe, Robert B.
Fang, Fang
机构
[1] NexBio Inc., San Diego, CA
[2] Centers for Disease Control and Prevention, Atlanta, GA
[3] Saint Louis University Medical Center, St. Louis, MO
来源
PLOS ONE | 2009年 / 4卷 / 11期
关键词
OSELTAMIVIR RESISTANCE; REDUCED SENSITIVITY; B VIRUSES; SUSCEPTIBILITY; HEMAGGLUTININ; TRANSMISSION; DRUG; GLYCOSYLATION; SEQUENCE; H1N1;
D O I
10.1371/journal.pone.0007838
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Antiviral drug resistance for influenza therapies remains a concern due to the high prevalence of H1N1 2009 seasonal influenza isolates which display H274Y associated oseltamivir-resistance. Furthermore, the emergence of novel H1N1 raises the potential that additional reassortments can occur, resulting in drug resistant virus. Thus, additional antiviral approaches are urgently needed. DAS181 (Fludase (R)), a sialidase fusion protein, has been shown to have inhibitory activity against a large number of seasonal influenza strains and a highly pathogenic avian influenza ( HPAI) strain (H5N1). Here, we examine the in vitro activity of DAS181 against a panel of 2009 oseltamivir-resistant seasonal H1N1 clinical isolates. The activity of DAS181 against nine 2009, two 2007, and two 2004 clinical isolates of seasonal IFV H1N1 was examined using plaque number reduction assay on MDCK cells. DAS181 strongly inhibited all tested isolates. EC50 values remained constant against isolates from 2004, 2007, and 2009, suggesting that there was no change in DAS181 sensitivity over time. As expected, all 2007 and 2009 isolates were resistant to oseltamivir, consistent with the identification of the H274Y mutation in the NA gene of all these isolates. Interestingly, several of the 2007 and 2009 isolates also exhibited reduced sensitivity to zanamivir, and accompanying HA mutations near the sialic acid binding site were observed. DAS181 inhibits IFV that is resistant to NAIs. Thus, DAS181 may offer an alternative therapeutic option for seasonal or pandemic IFVs that become resistant to currently available antiviral drugs.
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页数:9
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