Zika virus enhances monocyte adhesion and transmigration favoring viral dissemination to neural cells

Author:

Ayala-Nunez Nilda VanesaORCID,Follain Gautier,Delalande François,Hirschler Aurélie,Partiot EmmaORCID,Hale Gillian L.,Bollweg Brigid C.ORCID,Roels Judith,Chazal MaximeORCID,Bakoa Florian,Carocci Margot,Bourdoulous SandrineORCID,Faklaris Orestis,Zaki Sherif R.,Eckly AnitaORCID,Uring-Lambert Béatrice,Doussau FrédéricORCID,Cianferani Sarah,Carapito ChristineORCID,Jacobs Frank M. J.,Jouvenet NolwennORCID,Goetz Jacky G.ORCID,Gaudin RaphaelORCID

Abstract

Abstract Zika virus (ZIKV) invades and persists in the central nervous system (CNS), causing severe neurological diseases. However the virus journey, from the bloodstream to tissues through a mature endothelium, remains unclear. Here, we show that ZIKV-infected monocytes represent suitable carriers for viral dissemination to the CNS using human primary monocytes, cerebral organoids derived from embryonic stem cells, organotypic mouse cerebellar slices, a xenotypic human-zebrafish model, and human fetus brain samples. We find that ZIKV-exposed monocytes exhibit higher expression of adhesion molecules, and higher abilities to attach onto the vessel wall and transmigrate across endothelia. This phenotype is associated to enhanced monocyte-mediated ZIKV dissemination to neural cells. Together, our data show that ZIKV manipulates the monocyte adhesive properties and enhances monocyte transmigration and viral dissemination to neural cells. Monocyte transmigration may represent an important mechanism required for viral tissue invasion and persistence that could be specifically targeted for therapeutic intervention.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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