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Evolution of ocular defects in infant macaques following in utero Zika virus infection
Glenn Yiu, Sara M. Thomasy, M. Isabel Casanova, Alexander Rusakevich, Rebekah I. Keesler, Jennifer Watanabe, Jodie Usachenko, Anil Singapuri, Erin E. Ball, Eliza Bliss-Moreau, Wendi Guo, Helen Webster, Tulika Singh, Sallie Permar, Amir Ardeshir, Lark L. Coffey, Koen K.A. Van Rompay
Glenn Yiu, Sara M. Thomasy, M. Isabel Casanova, Alexander Rusakevich, Rebekah I. Keesler, Jennifer Watanabe, Jodie Usachenko, Anil Singapuri, Erin E. Ball, Eliza Bliss-Moreau, Wendi Guo, Helen Webster, Tulika Singh, Sallie Permar, Amir Ardeshir, Lark L. Coffey, Koen K.A. Van Rompay
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Research Article Immunology Ophthalmology

Evolution of ocular defects in infant macaques following in utero Zika virus infection

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Abstract

Congenital Zika syndrome (CZS) is associated with microcephaly and various neurological, musculoskeletal, and ocular abnormalities, but the long-term pathogenesis and postnatal progression of ocular defects in infants are not well characterized. Rhesus macaques are superior to rodents as models of CZS because they are natural hosts of the virus and share similar immune and ocular characteristics, including blood–retinal barrier characteristics and the unique presence of a macula. Using a previously described model of CZS, we infected pregnant rhesus macaques with Zika virus (ZIKV) during the late first trimester and characterized postnatal ocular development and evolution of ocular defects in 2 infant macaques over 2 years. We found that one of them exhibited colobomatous chorioretinal atrophic lesions with macular and vascular dragging as well as retinal thinning caused by loss of retinal ganglion neuron and photoreceptor layers. Despite these congenital ocular malformations, axial elongation and retinal development in these infants progressed at normal rates compared with healthy animals. The ZIKV-exposed infants displayed a rapid loss of ZIKV-specific antibodies, suggesting the absence of viral replication after birth, and did not show any behavioral or neurological defects postnatally. Our findings suggest that ZIKV infection during early pregnancy can impact fetal retinal development and cause congenital ocular anomalies but does not appear to affect postnatal ocular growth.

Authors

Glenn Yiu, Sara M. Thomasy, M. Isabel Casanova, Alexander Rusakevich, Rebekah I. Keesler, Jennifer Watanabe, Jodie Usachenko, Anil Singapuri, Erin E. Ball, Eliza Bliss-Moreau, Wendi Guo, Helen Webster, Tulika Singh, Sallie Permar, Amir Ardeshir, Lark L. Coffey, Koen K.A. Van Rompay

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Figure 3

Multimodal imaging of chorioretinal lesions in ZIKV-infected infant macaques.

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Multimodal imaging of chorioretinal lesions in ZIKV-infected infant maca...
(A) Color FP, NIR, FAF, and FA imaging of chorioretinal atrophic lesions in the right (OD) and left (OS) eyes of ZIKV-infected infant no. 1. (B) SD-OCT B-scan images of the chorioretinal lesions corresponding to the numbered location (1–4) noted in the NIR images in A, taken from the right (OD) and left (OS) eyes of ZIKV-infected infant no. 1. (C) FP, NIR, and FAF images of the right (OD) and left (OS) eyes of 2 infant macaques (no. 1 and no. 2) exposed to ZIKV infection in utero. In the top left panel of C, the right eye of infant no. 1 showed peripapillary atrophy (asterisk) and superotemporal dragging of the macula and superior vascular arcade (arrowheads) in the direction of the large choreoretinal atrophic lesion seen in top left panel of A. The right eye of infant no. 2 showed a small yellowish spot (arrow) that did not appear on NIR or FAF imaging. All scale bars: 500 μm. ZIKV, Zika virus; FP, fundus photograph; NIR, near-infrared; FAF, fundus autofluorescence; FA, fluorescein angiography; OD, right eye; OS, left eye; SD-OCT, spectral domain–optical coherence tomography.

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ISSN 2379-3708

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