๐ Spatiotemporal interplay of severe acute respiratory syndrome coronavirus and respiratory mucosal cells drives viral dissemination in rhesus macaques
Innate immune responses have a critical role in the control of early virus replication and dissemination. It remains unknown, however, how severe acute respiratory syndrome coronavirus (SARS-CoV) evades respiratory innate immunity to establish a systemic infection. Here we show in Chinese macaques that SARS-CoV traversed the mucosa through the respiratory tract within 2 days, resulting in extensive mucosal infiltration by T cells, MAC387 +, and CD163 + monocytes/macrophages followed by limited viral replication in the lung but persistent viral shedding into the upper airway. Mucosal monocytes/macrophages sequestered virions in intracellular vesicles together with infected Langerhans cells and migrated into the tonsils and/or draining lymph nodes within 2 days. In lymphoid tissues, viral RNA and proteins were detected in infected monocytes upon differentiation into dendritic cells (DCs) within 3 days. Systemic viral dissemination was observed within 7 days. This study provides a comprehensive overview of the spatiotemporal interactions of SARS-CoV, monocytes/macrophages, and the DC network in mucosal tissues and highlights the fact that, while these innate cells contribute to viral clearance, they probably also serve as shelters and vehicles to provide a mechanism for the virus to escape host mucosal innate immunity and disseminate systemically.
keywords
๐ severe acute (1373)
๐ syndrome coronavirus (1074)
๐ dendritic cells (45)
๐ innate immunity (35)
๐ lymph node (56)
๐ immune response (314)
๐ virus replication (219)
๐ immune responses (142)
๐ respiratory syndrome (2004)
๐ respiratory tract (344)
๐ acute respiratory (1734)
๐ viral replication (258)
author
๐ค Liu, L.
๐ค Wei, Q.
๐ค Nishiura, K.
๐ค Peng, J.
๐ค Wang, H.
๐ค Midkiff, C.
๐ค Alvarez, X.
๐ค Qin, C.
๐ค Lackner, A.
๐ค Chen, Z.
year
โฐ 2016
journal
๐ Mucosal Immunology
issn
๐ 19353456 19330219
volume
9
number
4
page
1089-1101
citedbycount
2
download
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