Статья

A systems immunology approach to plasmacytoid dendritic cell function in cytopathic virus infections

G. Bocharov, R. Züst, L. Cervantes-Barragan, T. Luzyanina, E. Chiglintsev, V. Chereshnev, V. Thiel, B. Ludewig,
2021

Plasmacytoid dendritic cell (pDC)-mediated protection against cytopathic virus infection involves various molecular, cellular, tissue-scale, and organism-scale events. In order to better understand such multiscale interactions, we have implemented a systems immunology approach focusing on the analysis of the structure, dynamics and operating principles of virus-host interactions which constrain the initial spread of the pathogen. Using high-resolution experimental data sets coming from the well-described mouse hepatitis virus (MHV) model, we first calibrated basic modules including MHV infection of its primary target cells, i.e. pDCs and macrophages (Mφs). These basic building blocks were used to generate and validate an integrative mathematical model for in vivo infection dynamics. Parameter estimation for the system indicated that on a per capita basis, one infected pDC secretes sufficient type I IFN to protect 103 to 104 Mφs from cytopathic viral infection. This extremely high protective capacity of pDCs secures the spleen's capability to function as a 'sink' for the virus produced in peripheral organs such as the liver. Furthermore, our results suggest that the pDC population in spleen ensures a robust protection against virus variants which substantially down-modulate IFN secretion. However, the ability of pDCs to protect against severe disease caused by virus variants exhibiting an enhanced liver tropism and higher replication rates appears to be rather limited. Taken together, this systems immunology analysis suggests that antiviral therapy against cytopathic viruses should primarily limit viral replication within peripheral target organs. © 2010 Bocharov et al.

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  • 1. Version of Record от 2021-04-27

Метаданные

Об авторах
  • G. Bocharov
    Institute of Numerical Mathematics, Russian Academy of Sciences, Moscow, Russian Federation
  • R. Züst
    Institute of Immunobiology, Kantonal Hospital St. Gallen, St. Gallen, Switzerland
  • L. Cervantes-Barragan
    Institute of Mathematical Problems in Biology, Russian Academy of Sciences, Pushchino, Russian Federation
  • T. Luzyanina
    Novosibirsk State University, Novosibirsk, Russian Federation
  • E. Chiglintsev
    Institute of Immunology and Physiology, Ural Branch of the Russian Academy of Sciences, Ekaterinburg, Russian Federation
  • V. Chereshnev
    VetSuisse Faculty, University of Zurich, Zurich, Switzerland
  • V. Thiel
  • B. Ludewig
Название журнала
  • PLoS Pathogens
Том
  • 6
Выпуск
  • 7
Страницы
  • 1-15
Ключевые слова
  • alpha interferon; interferon; antivirus agent; animal experiment; animal tissue; article; cell activation; cell population; Coronavirus infection; immunology; in vivo study; interferon production; macrophage; mouse; Murine hepatitis coronavirus; nonhuman; plasmacytoid dendritic cell; spleen; virogenesis; virus replication; biological model; dendritic cell; drug delivery system; host pathogen interaction; liver; methodology; systems biology; theoretical model; virology; virus infection; Murine hepatitis virus; Allergy and Immunology; Antiviral Agents; Dendritic Cells; Drug Delivery Systems; Host-Pathogen Interactions; Liver; Macrophages; Models, Biological; Models, Theoretical; Systems Biology; Virus Diseases
Тип документа
  • journal article
Тип лицензии Creative Commons
  • CC
Правовой статус документа
  • Свободная лицензия
Источник
  • scopus