Innate immune sensing and response to influenza

B Pulendran, MS Maddur - Influenza Pathogenesis and Control-Volume II, 2015 - Springer
B Pulendran, MS Maddur
Influenza Pathogenesis and Control-Volume II, 2015Springer
Influenza viruses pose a substantial threat to human and animal health worldwide. Recent
studies in mouse models have revealed an indispensable role for the innate immune system
in defense against influenza virus. Recognition of the virus by innate immune receptors in a
multitude of cell types activates intricate signaling networks, functioning to restrict viral
replication. Downstream effector mechanisms include activation of innate immune cells and,
induction and regulation of adaptive immunity. However, uncontrolled innate responses are …
Abstract
Influenza viruses pose a substantial threat to human and animal health worldwide. Recent studies in mouse models have revealed an indispensable role for the innate immune system in defense against influenza virus. Recognition of the virus by innate immune receptors in a multitude of cell types activates intricate signaling networks, functioning to restrict viral replication. Downstream effector mechanisms include activation of innate immune cells and, induction and regulation of adaptive immunity. However, uncontrolled innate responses are associated with exaggerated disease, especially in pandemic influenza virus infection. Despite advances in the understanding of innate response to influenza in the mouse model, there is a large knowledge gap in humans, particularly in immunocompromised groups such as infants and the elderly. We propose here, the need for further studies in humans to decipher the role of innate immunity to influenza virus, particularly at the site of infection. These studies will complement the existing work in mice and facilitate the quest to design improved vaccines and therapeutic strategies against influenza.
Springer