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Cytomegalovirus durably primes neutrophil oxidative burst.

Authors :
Marandu, Thomas F.
Dombek, Michael
Gutknecht, Michael
Griessl, Marion
Riça, Ingred Goretti
Vlková, Barbora
Macáková, Kristína
Panagioti, Eleni
Griffith, Alec
Lederer, James
Yaffe, Michael
Shankar, Sidharth
Otterbein, Leo
Itagaki, Kiyoshi
Hauser, Carl J.
Cook, Charles H.
Source :
Journal of Leukocyte Biology; Nov2023, Vol. 114 Issue 5, p459-474, 16p
Publication Year :
2023

Abstract

Cytomegalovirus (CMV) is a ubiquitous herpes virus that infects most humans, thereafter persisting lifelong in tissues of the host. It is a known pathogen in immunosuppressed patients, but its impact on immunocompetent hosts remains less understood. Recent data have shown that CMV leaves a significant and long-lasting imprint in host immunity that may confer some protection against subsequent bacterial infection. Such innate immune activation may come at a cost, however, with potential to cause immunopathology. Neutrophils are central to many models of immunopathology, and while acute CMV infection is known to influence neutrophil biology, the impact of chronic CMV infection on neutrophil function remains unreported. Using our murine model of CMV infection and latency, we show that chronic CMV causes persistent enhancement of neutrophil oxidative burst well after resolution of acute infection. Moreover, this in vivo priming of marrow neutrophils is associated with enhanced formyl peptide receptor expression, and ultimately constitutive c-Jun N-terminal kinase phosphorylation and enhanced CD14 expression in/on circulating neutrophils. Finally, we show that neutrophil priming is dependent on viral load, suggesting that naturally infected human hosts will show variability in CMV-related neutrophil priming. Altogether, these findings represent a previously unrecognized and potentially important impact of chronic CMV infection on neutrophil responsiveness in immunocompetent hosts. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07415400
Volume :
114
Issue :
5
Database :
Complementary Index
Journal :
Journal of Leukocyte Biology
Publication Type :
Academic Journal
Accession number :
174258269
Full Text :
https://doi.org/10.1093/jleuko/qiad091