Icam-1 participates in the entry of west nile virus into the central nervous system.

Abstract:

:Determining how West Nile virus crosses the blood-brain barrier is critical to understanding the pathogenesis of encephalitis. Here, we show that ICAM-1(-/-) mice are more resistant than control animals to lethal West Nile encephalitis. ICAM-1(-/-) mice have a lower viral load, reduced leukocyte infiltration, and diminished neuronal damage in the brain compared to control animals. This is associated with decreased blood-brain barrier leakage after viral infection. These data suggest that ICAM-1 plays an important role in West Nile virus neuroinvasion and that targeting ICAM-1 signaling may help control viral encephalitis.

journal_name

J Virol

journal_title

Journal of virology

authors

Dai J,Wang P,Bai F,Town T,Fikrig E

doi

10.1128/JVI.02621-07

subject

Has Abstract

pub_date

2008-04-01 00:00:00

pages

4164-8

issue

8

eissn

0022-538X

issn

1098-5514

pii

JVI.02621-07

journal_volume

82

pub_type

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