scholarly journals Viral Induction of Central Nervous System Innate Immune Responses

2005 ◽  
Vol 79 (7) ◽  
pp. 4369-4381 ◽  
Author(s):  
J. D. Rempel ◽  
L. A. Quina ◽  
P. K. Blakely-Gonzales ◽  
M. J. Buchmeier ◽  
D. L. Gruol

ABSTRACT The ability of the central nervous system (CNS) to generate innate immune responses was investigated in an in vitro model of CNS infection. Cultures containing CNS cells were infected with mouse hepatitis virus-JHM, which causes fatal encephalitis in mice. Immunostaining indicated that viral infection had a limited effect on culture characteristics, overall cell survival, or cell morphology at the early postinfection times studied. Results from Affymetrix gene array analysis, assessed on RNA isolated from virally and sham-infected cultures, were compared with parallel protein assays for cytokine, chemokine, and cell surface markers. Of the 126 transcripts found to be differentially expressed between viral and sham infections, the majority were related to immunological responses. Virally induced increases in interleukin-6 and tumor necrosis factor alpha mRNA and protein expression correlated with the genomic induction of acute-phase proteins. Genomic and protein analysis indicated that viral infection resulted in prominent expression of neutrophil and macrophage chemotactic proteins. In addition, mRNA expression of nonclassical class I molecules H2-T10, -T17, -M2, and -Q10, were enhanced three- to fivefold in virus-infected cells compared to sham-infected cells. Thus, upon infection, resident brain cells induced a breadth of innate immune responses that could be vital in directing the outcome of the infection and, in vivo, would provide signals which would summon the peripheral immune system to respond to the infection. Further understanding of how these innate responses participate in immune protection or immunopathology in the CNS will be critical in efforts to intervene in severe encephalitis.

AIDS ◽  
2014 ◽  
Vol 28 (5) ◽  
pp. 657-666 ◽  
Author(s):  
Vivek Naranbhai ◽  
Christina C. Chang ◽  
Raveshni Durgiah ◽  
Saleha Omarjee ◽  
Andrew Lim ◽  
...  

2020 ◽  
Author(s):  
Marion Ferren ◽  
Valérie Favede ◽  
Didier Decimo ◽  
Mathieu Iampietro ◽  
Nicole A. P. Lieberman ◽  
...  

Abstract SARS-CoV-2 has caused a global pandemic of Covid-19 since its emergence in December 2019. The infection causes a severe acute respiratory syndrome and may also lead to central nervous system infection and neurological sequelae. We developed and characterized two new organotypic cultures from hamster brainstem and lung tissues that offer the unique opportunity to study the early steps of the pathogenesis and screening of antivirals. Using these models, we validated the early tropism of the virus in the lung and demonstrated that SARS-CoV2 can infect brainstem and cerebellum, mainly by targeting granular neurons. Viral infection induced specific interferon and innate immune responses with patterns specific to each organ along with apoptotic, necroptotic, and pyroptotic cell death. Overall, our data illustrate the potential of rapidly modeling complex tissue level interactions of viral infection in a newly emerged virus.


2012 ◽  
Vol 86 (15) ◽  
pp. 8107-8118 ◽  
Author(s):  
S. A. Schittone ◽  
K. R. Dionne ◽  
K. L. Tyler ◽  
P. Clarke

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