Molecular Mechanisms of Zika Virus Entry into Host Cells

The World Health Organization classifies mosquito-borne viruses as a major global public health threat with pandemic risk and urges all nations to strengthen pandemic preparedness. As a representative mosquito-borne flavivirus, ZIKV bears prominent pandemic capacity. Its distinctive neurotropic property and capability of vertical transmission create unique pathogenic hazards and transmission risks. Owing to the absence of approved vaccines and targeted antiviral therapeutics, the prevention and management of ZIKV outbreaks remain extremely challenging. Viral entry into host cells marks the very first step of productive ZIKV infection, and mechanistic investigations into this entry process lay an essential theoretical foundation for developing small-molecule agents that block ZIKV cellular entry. This review summarizes recent advances concerning ZIKV host receptor usage, membrane fusion cascades, and entry-targeted inhibitor development; systematically discusses existing inconsistencies and core controversies in cell type-dependent entry pathways, functionally redundant host receptor usage, especially the disputed AXL receptor, and unresolved molecular details of membrane fusion resulting from diverse experimental models and technical limitations; and proposes targeted future research directions to resolve these bottlenecks and clarify the context-dependent ZIKV entry mechanisms.

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Publication Details

Journal
Viruses
Published
2026-09-09
DOI
https://doi.org/10.3390/v18090991
Primary Topic
Mosquito-borne diseases and control
Type
article
Field-Weighted Citation Impact
0.00
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article

Molecular Mechanisms of Zika Virus Entry into Host Cells

Xin Zhao, Wenjun Zhao, Wenhui Li, Xiaodong Han et al.
Viruses
Mosquito-borne diseases and control
article

Molecular Mechanisms of Zika Virus Entry into Host Cells

Xin Zhao, Wenjun Zhao, Wenhui Li, Xiaodong Han, Rong Lei, Haolong Cong
article en

Abstract

The World Health Organization classifies mosquito-borne viruses as a major global public health threat with pandemic risk and urges all nations to strengthen pandemic preparedness. As a representative mosquito-borne flavivirus, ZIKV bears prominent pandemic capacity. Its distinctive neurotropic property and capability of vertical transmission create unique pathogenic hazards and transmission risks. Owing to the absence of approved vaccines and targeted antiviral therapeutics, the prevention and management of ZIKV outbreaks remain extremely challenging. Viral entry into host cells marks the very first step of productive ZIKV infection, and mechanistic investigations into this entry process lay an essential theoretical foundation for developing small-molecule agents that block ZIKV cellular entry. This review summarizes recent advances concerning ZIKV host receptor usage, membrane fusion cascades, and entry-targeted inhibitor development; systematically discusses existing inconsistencies and core controversies in cell type-dependent entry pathways, functionally redundant host receptor usage, especially the disputed AXL receptor, and unresolved molecular details of membrane fusion resulting from diverse experimental models and technical limitations; and proposes targeted future research directions to resolve these bottlenecks and clarify the context-dependent ZIKV entry mechanisms.

VirusesVol. 18(9)
Inner Mongolia Agricultural University (CN), Chinese Academy of Inspection and Quarantine (CN)
Good health and well-being
Openalex Percentile: Top 8%
Mosquito-borne diseases and control
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Molecular Mechanisms of Zika Virus Entry into Host Cells — Xin Zhao, Wenjun Zhao, et al. · Viruses (2026) | TGRS Research Map | TGRS