4.6 Article

Zika virus induces neuronal and vascular degeneration in developing mouse retina

期刊

出版社

BMC
DOI: 10.1186/s40478-021-01195-6

关键词

Zika virus; Retina; Neuronal degeneration; Vascular degeneration; Inflammation; Endoplasmic reticulum stress; Drug efficacy; Vaccine safety

资金

  1. National Institutes of Health [EY031054, EY029112, EY022694, EY026629]
  2. Retina Research Foundation
  3. Institute for Human Infections Immunity
  4. UT System Faculty STARs Award
  5. Texas Alzheimer's Research Consortium (TARCC) - state of Texas through the Texas Council on Alzheimer's Disease and Related Disorders [2020-63-92-JI]
  6. Sealy Center for Vector-borne and Zoonotic Diseases
  7. NIH [AI134907, UL1TR001439]
  8. Sealy & Smith Foundation
  9. John S. Dunn Foundation
  10. Amon G. Carter Foundation
  11. Gilson Longenbaugh Foundation
  12. Summerfield Robert Foundation
  13. Kleberg Foundation

向作者/读者索取更多资源

Research suggests that ZIKV infection causes damage to the neurons and blood vessels in the retina, leading to inflammation and cell apoptosis, resulting in retinal abnormalities. The use of the preventive drug NITD008 may help to block ZIKV-induced retinal abnormalities, but the use of a live-attenuated ZIKV vaccine candidate may potentially induce them. This study established a new mouse model, providing a direct link between ZIKV and retinal lesions, laying the foundation for further investigation into the mechanisms of ZIKV-induced retinopathy and the development of effective treatments.
Zika virus (ZIKV), a mosquito-borne flavivirus, can cause severe eye disease and even blindness in newborns. However, ZIKV-induced retinal lesions have not been studied in a comprehensive way, mechanisms of ZIKV-induced retinal abnormalities are unknown, and no therapeutic intervention is available to treat or minimize the degree of vision loss in patients. Here, we developed a novel mouse model of ZIKV infection to evaluate its impact on retinal structure. ZIKV (20 plaque-forming units) was inoculated into neonatal wild type C57BL/6J mice at postnatal day (P) 0 subcutaneously. Retinas of infected mice and age-matched controls were collected at various ages, and retinal structural alterations were analyzed. We found that ZIKV induced progressive neuronal and vascular damage and retinal inflammation starting from P8. ZIKV-infected retina exhibited dramatically decreased thickness with loss of neurons, initial neovascular tufts followed by vessel dilation and degeneration, increased microglia and leukocyte recruitment and activation, degeneration of astrocyte network and gliosis. The above changes may involve inflammation and endoplasmic reticulum stress-mediated cell apoptosis and necroptosis. Moreover, we evaluated the efficacy of preclinical drugs and the safety of ZIKV vaccine candidate in this mouse model. We found that ZIKV-induced retinal abnormalities could be blocked by a selective flavivirus inhibitor NITD008 and a live-attenuated ZIKV vaccine candidate could potentially induce retinal abnormalities. Overall, we established a novel mouse model and provide a direct causative link between ZIKV and retinal lesion in vivo, which warrants further investigation of the underlying mechanisms of ZIKV-induced retinopathy and the development of effective therapeutics.

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