AbstractA novel inhibitor of influenza virus growth in tissue culture was identified and characterized. This compound (BMY-27709) has an IC50of 3–8 μMfor A/WSN/33 virus growth in a multicycle replication assay and is active against all H1 and H2 subtype viruses tested. However, BMY-27709 was found to be inactive against H3 subtype viruses, as well as influenza B/Lee/40 virus. BMY-27709 was also found to act against H1 and H2 viruses early in infection, suggesting that the target for inhibition is the hemagglutinin protein. This was confirmed through the use of reassortant viruses and the isolation of a virus resistant to BMY-27709. The resistant virus isolated contained a phenylalanine to serine change at amino acid 110 of the HA2 subunit. ...
An ultrahigh-throughput screen was performed to identify novel small molecule inhibitors of influenz...
New inhibitors of influenza viruses are needed to combat the potential emergence of novel human infl...
In light of the recent novel H1N1 virus epidemic, virus resistance to currently approved antiviral m...
AbstractA novel inhibitor of influenza virus growth in tissue culture was identified and characteriz...
Influenza A virus is the major pathogen contributing to seasonal infections and even severe pandemic...
We identified new inhibitors of influenza virus hemagglutinin(HA)–mediated fusion, having a similar ...
We here report on a new class of inhibitors of influenza virus hemagglutinin (HA)–mediated fusion, w...
Hemagglutinin (HA) of the influenza virus plays a crucial role in the early stage of the viral life ...
We report on a new class of inhibitors of influenza virus hemagglutinin (HA)–mediated fusion. In Mad...
Influenza viruses are a major public health threat worldwide, and options for antiviral therapy are ...
Introduction: The influenza virus hemagglutinin (HA) plays a crucial role in fusion between the vira...
<div><p>New inhibitors of influenza viruses are needed to combat the potential emergence of novel hu...
New inhibitors of influenza viruses are needed to combat the potential emergence of novel human infl...
A new class of N-(1-thia-4-azaspiro[4.5]decan-4-yl)carboxamide inhibitors of influenza virus hemaggl...
Antiviral medication is an important option for treatment of influenza virus infections. Two classes...
An ultrahigh-throughput screen was performed to identify novel small molecule inhibitors of influenz...
New inhibitors of influenza viruses are needed to combat the potential emergence of novel human infl...
In light of the recent novel H1N1 virus epidemic, virus resistance to currently approved antiviral m...
AbstractA novel inhibitor of influenza virus growth in tissue culture was identified and characteriz...
Influenza A virus is the major pathogen contributing to seasonal infections and even severe pandemic...
We identified new inhibitors of influenza virus hemagglutinin(HA)–mediated fusion, having a similar ...
We here report on a new class of inhibitors of influenza virus hemagglutinin (HA)–mediated fusion, w...
Hemagglutinin (HA) of the influenza virus plays a crucial role in the early stage of the viral life ...
We report on a new class of inhibitors of influenza virus hemagglutinin (HA)–mediated fusion. In Mad...
Influenza viruses are a major public health threat worldwide, and options for antiviral therapy are ...
Introduction: The influenza virus hemagglutinin (HA) plays a crucial role in fusion between the vira...
<div><p>New inhibitors of influenza viruses are needed to combat the potential emergence of novel hu...
New inhibitors of influenza viruses are needed to combat the potential emergence of novel human infl...
A new class of N-(1-thia-4-azaspiro[4.5]decan-4-yl)carboxamide inhibitors of influenza virus hemaggl...
Antiviral medication is an important option for treatment of influenza virus infections. Two classes...
An ultrahigh-throughput screen was performed to identify novel small molecule inhibitors of influenz...
New inhibitors of influenza viruses are needed to combat the potential emergence of novel human infl...
In light of the recent novel H1N1 virus epidemic, virus resistance to currently approved antiviral m...