Disruption of myelin structure and oligodendrocyte maturation in a pigtail macaque model of congenital Zika infection

Author:

Tisoncik-Go Jennifer,Stokes CalebORCID,Whitmore Leanne S.,Newhouse Daniel J.,Voss Kathleen,Gustin Andrew,Sung Cheng-Jung,Smith Elise,Stencel-Baerenwald Jennifer,Parker Edward,Snyder Jessica M.,Shaw Dennis W.,Rajagopal Lakshmi,Kapur Raj P.,Waldorf Kristina AdamsORCID,Gale Michael

Abstract

AbstractZika virus (ZikV) infection during pregnancy can cause congenital Zika syndrome (CZS) and neurodevelopmental delay in non-microcephalic infants, of which the pathogenesis remains poorly understood. We utilized an established pigtail macaque maternal-to-fetal ZikV infection/exposure model to study fetal brain pathophysiology of CZS manifesting from ZikV exposurein utero.We found prenatal ZikV exposure led to profound disruption of fetal myelin, with extensive downregulation in gene expression for key components of oligodendrocyte maturation and myelin production. Immunohistochemical analyses revealed marked decreases in myelin basic protein intensity and myelinated fiber density in ZikV-exposed animals. At the ultrastructural level, the myelin sheath in ZikV-exposed animals showed multi-focal decompaction consistent with perturbation or remodeling of previously formed myelin, occurring concomitant with dysregulation of oligodendrocyte gene expression and maturation. These findings define fetal neuropathological profiles of ZikV-linked brain injury underlying CZS resulting from ZikV exposurein utero. Because myelin is critical for cortical development, ZikV-related perturbations in oligodendrocyte function may have long-term consequences on childhood neurodevelopment, even in the absence of overt microcephaly.Graphical abstract

Publisher

Cold Spring Harbor Laboratory

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