Influenza A virus infects resident alveolar macrophages in the respiratory tract resulting in Toll like receptor 7 (TLR7) activation that triggers an inflammatory response to resolve the infection. Macrophages are also major sources of reactive oxygen species (ROS) via the NOX2-containing NADPH oxidase. Although ROS are crucial for pathogen clearance, in response to influenza A virus, ROS are touted as being culprit mediators of the lung tissue injury. The aim of the present study was to determine whether influenza A virus infection and TLR7 activation of macrophages, results in alterations in their ROS production. Here we demonstrate using immunofluorescence that influenza A virus (Hong Kong X-31 strain; H3N2) internalizes in RAW264.7 cell...
With the incessant challenge of exposure to the air we breathe, lung tissue suffers the highest leve...
Multiple lung pathogens such as chemical agents, H5N1 avian flu, or SARS cause high lethality due to...
Highly pathogenic avian influenza virus infection is associated with severe mortality in both humans...
An overproduction of reactive oxygen species (ROS) mediated by NADPH oxidase 2 (NOX2) has been relat...
Influenza A virus pandemics and emerging anti-viral resistance highlight the urgent need for novel g...
Influenza A virus infection is an ongoing clinical problem and thus, there is an urgent need to unde...
Influenza A virus infection is an ongoing clinical problem and thus, there is an urgent need to unde...
<div><p>Influenza A virus infection is an ongoing clinical problem and thus, there is an urgent need...
Aims: Reactive oxygen species (ROS) are highly reactive molecules generated in different subcellular...
Influenza A viral infections claim millions of lives worldwide and continue to impose a major burden...
An appropriate level of reactive oxygen species (ROS) is necessary for cell proliferation, signaling...
The imminent threat of viral epidemics and pandemics dictates a need for therapeutic approaches that...
As oxidative stress has been implicated in the pathogenesis of certain viral diseases we determined ...
The role of the reactive oxygen species-producing NADPH oxidase family of enzymes in the pathology o...
Influenza A virus pandemics and emerging anti-viral resistance highlight the urgent need for novel g...
With the incessant challenge of exposure to the air we breathe, lung tissue suffers the highest leve...
Multiple lung pathogens such as chemical agents, H5N1 avian flu, or SARS cause high lethality due to...
Highly pathogenic avian influenza virus infection is associated with severe mortality in both humans...
An overproduction of reactive oxygen species (ROS) mediated by NADPH oxidase 2 (NOX2) has been relat...
Influenza A virus pandemics and emerging anti-viral resistance highlight the urgent need for novel g...
Influenza A virus infection is an ongoing clinical problem and thus, there is an urgent need to unde...
Influenza A virus infection is an ongoing clinical problem and thus, there is an urgent need to unde...
<div><p>Influenza A virus infection is an ongoing clinical problem and thus, there is an urgent need...
Aims: Reactive oxygen species (ROS) are highly reactive molecules generated in different subcellular...
Influenza A viral infections claim millions of lives worldwide and continue to impose a major burden...
An appropriate level of reactive oxygen species (ROS) is necessary for cell proliferation, signaling...
The imminent threat of viral epidemics and pandemics dictates a need for therapeutic approaches that...
As oxidative stress has been implicated in the pathogenesis of certain viral diseases we determined ...
The role of the reactive oxygen species-producing NADPH oxidase family of enzymes in the pathology o...
Influenza A virus pandemics and emerging anti-viral resistance highlight the urgent need for novel g...
With the incessant challenge of exposure to the air we breathe, lung tissue suffers the highest leve...
Multiple lung pathogens such as chemical agents, H5N1 avian flu, or SARS cause high lethality due to...
Highly pathogenic avian influenza virus infection is associated with severe mortality in both humans...