Author:
Ueki Hiroshi,Wang I-Hsuan,Fukuyama Satoshi,Katsura Hiroaki,da Silva Lopes Tiago Jose,Neumann Gabriele,Kawaoka Yoshihiro
Abstract
The pathophysiological changes that occur in lungs infected with influenza viruses are poorly understood. Here we established an in vivo imaging system that combines two-photon excitation microscopy and fluorescent influenza viruses of different pathogenicity. This approach allowed us to monitor and correlate several parameters and physiological changes including the spread of infection, pulmonary permeability, pulmonary perfusion speed, number of recruited neutrophils in infected lungs, and neutrophil motion in the lungs of live mice. Several physiological changes were larger and occurred earlier in mice infected with a highly pathogenic H5N1 influenza virus compared with those infected with a mouse-adapted human strain. These findings demonstrate the potential of our in vivo imaging system to provide novel information about the pathophysiological consequences of virus infections.
Funder
MEXT | Japan Science and Technology Agency
Japan Agency for Medical Research and Development
Ministry of Education, Culture, Sports, Science and Technology
MEXT | Japan Society for the Promotion of Science
Publisher
Proceedings of the National Academy of Sciences
Cited by
33 articles.
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