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Virions and respiratory droplets in air: Diffusion, drift, and contact with the epithelium of single virions and respiratory droplets consisting primarily of water, including small fraction

Human and avian influenza viruses target different cell types in cultures of human airway epithelium of these viruses to cellular receptors and extracellular inhibitors in the human respiratory tract. However

COVID-19 and kidneys [COVID-19 И ПОЧКИ] to tubular epithelium cells and podocytes, and red blood cell aggregation in severely COVID-19 patients

Neuraminidase is important for the initiation of influenza virus infection in human airway epithelium into cell, we infected cultures of human airway epithelium with human and avian influenza viruses

Amino acid 226 in the hemagglutinin of H4N6 influenza virus determines binding affinity for α2,6-linked sialic acid and infectivity levels in primary swine and human respiratory epithelial cells swine and human respiratory epithelial cells, whereas viruses which contain Q226 had lower SAα2,6Gal

Neuroinvasion, neurotropic, and neuroinflammatory events of SARS-CoV-2: understanding the neurological manifestations in COVID-19 patientsRespiratory viruses are opportunistic pathogens that infect the upper respiratory tract in humans

Human-like receptor specificity does not affect the neuraminidase-inhibitor susceptibility of H5N1 influenza viruses respiratory epithelium, will their susceptibility to neuraminidase (NA) inhibitors (the likely first line

Transcriptional landscape of SARS-CoV-2 infection dismantles pathogenic pathways activated by the virus, proposes unique sex-specific differences and predicts tailored therapeutic strategiesThe emergence of the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) disease (COVID-19

Clinical and pathomorphological manifestations of respiratory syncytial virus infection. Case report differentiation of epithelial lumen and poor regeneration of respiratory epithelium in the later stages

Decreased neuraminidase activity is important for the adaptation of H5N1 influenza virus to human airway epithelium airway epithelium

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