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Kinetics of Influenza A Virus Infection in Humans

Journal of Virology · 2006 · Vol. 80(15) · pp. 7590–7599
Prasith BaccamCatherine A. A. BeaucheminCatherine A. MackenFrederick G. HaydenAlan S. Perelson

Abstract

Currently, little is known about the viral kinetics of influenza A during infection within an individual. We utilize a series of mathematical models of increasing complexity, which incorporate target cell limitation and the innate interferon response, to examine influenza A virus kinetics in the upper respiratory tracts of experimentally infected adults. The models were fit to data from an experimental H1N1 influenza A/Hong Kong/123/77 infection and suggest that it is important to include the eclipse phase of the viral life cycle in viral dynamic models. Doing so, we estimate that after a delay of approximately 6 h, infected cells begin producing influenza virus and continue to do so for approximately 5 h. The average lifetime of infected cells is approximately 11 h, and the half-life of free infectious virus is approximately 3 h. We calculated the basic reproductive number, R(0), which indicated that a single infected cell could produce approximately 22 new productive infections. This suggests that antiviral treatments have a large hurdle to overcome in moderating symptoms and limiting infectiousness and that treatment has to be initiated as early as possible. For about 50% of patients, the curve of viral titer versus time has two peaks. This bimodal behavior can be explained by incorporating the antiviral effects of interferon into the model. Our model also compared well to an additional data set on viral titer after experimental infection and treatment with the neuraminidase inhibitor zanamivir, which suggests that such models may prove useful in estimating the efficacies of different antiviral therapies for influenza A infection.

Influenza Virus Research StudiesRespiratory viral infections researchImmune Cell Function and InteractionBiologyVirologyVirusTiterInterferonZanamivirInfluenza A virusNeuraminidaseOrthomyxoviridaeImmunology

MeSH terms

Administration, IntranasalAdultAntiviral AgentsGuanidinesHumansInfluenza, HumanInterferonsKineticsModels, TheoreticalNosePyransSialic AcidsInfluenza A Virus, H1N1 SubtypeZanamivir

Funding

  • U.S. Department of Energy
  • National Institutes of Health
Citations
788
FWCI
9.10
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48
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98%
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References
HOW CELLS RESPOND TO INTERFERONS
Annual Review of Biochemistry · 1998 · 3,942 citations
Antiviral Actions of Interferons
Clinical Microbiology Reviews · 2001 · 2,744 citations
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