Berankova Michaela, Leoni Simone, Holoubek Jiri, Haviernik Jan, Salat Jiri, Grandgirard Denis, Leib Stephen L, Ruzek Daniel
Department of Experimental Biology, Faculty of Science, Masaryk University, Brno, Czech Republic.
Laboratory of Arbovirology, Institute of Parasitology, Biology Centre of the Czech Academy of Sciences, Ceske Budejovice, Czech Republic.
Emerg Microbes Infect. 2025 Dec;14(1):2542246. doi: 10.1080/22221751.2025.2542246. Epub 2025 Aug 20.
Tick-borne encephalitis virus (TBEV) is a neurotropic orthoflavivirus that invades the central nervous system, leading to severe neurological manifestations. In this study, we developed a reporter virus comprising TurboGFP-expressing TBEV (tGFP-TBEV) as a versatile tool for advancing TBEV research. The tGFP-TBEV facilitates quantitative measurement of viral replication, enables precise tracking of individual infected cells, and supports high-throughput screening of potential antiviral compounds and virus-neutralization assays. Furthermore, tGFP-TBEV proved effective as a model for studying TBEV infection in rat organotypic cerebellar slices cultured and for visualizing TBEV infection in the mouse brain. Using tissue-clearing protocols and light-sheet fluorescence microscopy, we achieved high-resolution, three-dimensional mapping of the TBEV distribution in the mouse brain. This analysis uncovered distinct patterns of TBEV tropism, with infections concentrated in regions associated with neurogenesis, olfactory processing, and specific neuroanatomical pathways. The ability to visualize infection at both the cellular and whole-organ level provides a new tool for detailed investigations into viral tropism, replication, and interactions with host tissues, paving the way for deeper insights into TBEV biology and the pathogenesis of tick-borne encephalitis.
蜱传脑炎病毒(TBEV)是一种嗜神经性正黄病毒,可侵入中枢神经系统,导致严重的神经症状。在本研究中,我们开发了一种表达TurboGFP的TBEV报告病毒(tGFP-TBEV),作为推进TBEV研究的通用工具。tGFP-TBEV有助于对病毒复制进行定量测量,能够精确追踪单个感染细胞,并支持对潜在抗病毒化合物的高通量筛选和病毒中和试验。此外,tGFP-TBEV被证明是研究培养的大鼠小脑器官型切片中TBEV感染以及观察小鼠脑中TBEV感染的有效模型。使用组织透明化方案和光片荧光显微镜,我们实现了小鼠脑中TBEV分布的高分辨率三维映射。该分析揭示了TBEV嗜性的不同模式,感染集中在与神经发生、嗅觉处理和特定神经解剖途径相关的区域。在细胞和全器官水平上可视化感染的能力为详细研究病毒嗜性、复制以及与宿主组织相互作用提供了新工具,为深入了解TBEV生物学和蜱传脑炎发病机制铺平了道路。