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呼吸道的混合感染:病毒对资源的竞争

Coinfections of the Respiratory Tract: Viral Competition for Resources.

作者信息

Pinky Lubna, Dobrovolny Hana M

机构信息

Physics and Astronomy Department, Texas Christian University, Fort Worth, Texas, United States of America.

出版信息

PLoS One. 2016 May 19;11(5):e0155589. doi: 10.1371/journal.pone.0155589. eCollection 2016.

Abstract

Studies have shown that simultaneous infection of the respiratory tract with at least two viruses is common in hospitalized patients, although it is not clear whether these infections are more or less severe than single virus infections. We use a mathematical model to study the dynamics of viral coinfection of the respiratory tract in an effort to understand the kinetics of these infections. Specifically, we use our model to investigate coinfections of influenza, respiratory syncytial virus, rhinovirus, parainfluenza virus, and human metapneumovirus. Our study shows that during coinfections, one virus can block another simply by being the first to infect the available host cells; there is no need for viral interference through immune response interactions. We use the model to calculate the duration of detectable coinfection and examine how it varies as initial viral dose and time of infection are varied. We find that rhinovirus, the fastest-growing virus, reduces replication of the remaining viruses during a coinfection, while parainfluenza virus, the slowest-growing virus is suppressed in the presence of other viruses.

摘要

研究表明,住院患者呼吸道同时感染至少两种病毒的情况很常见,不过尚不清楚这些感染与单一病毒感染相比,病情是更严重还是更轻。我们使用数学模型来研究呼吸道病毒合并感染的动态过程,以了解这些感染的动力学。具体而言,我们用模型研究流感病毒、呼吸道合胞病毒、鼻病毒、副流感病毒和人偏肺病毒的合并感染。我们的研究表明,在合并感染期间,一种病毒仅仅通过率先感染可用的宿主细胞就能阻止另一种病毒;无需通过免疫反应相互作用产生病毒干扰。我们用该模型计算可检测到的合并感染持续时间,并研究其如何随初始病毒剂量和感染时间的变化而变化。我们发现,生长速度最快的鼻病毒在合并感染期间会减少其余病毒的复制,而生长速度最慢的副流感病毒在有其他病毒存在时会受到抑制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1e9/4873262/8e4b72500f5c/pone.0155589.g001.jpg

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