Nanoscale Infection Biology, Helmholtz Centre for Infection Research, Inhoffenstr. 7, Braunschweig 38124, Germany.
Institute for Translational HIV Research, University Hospital Essen, Virchowstr. 171, Essen 45147, Germany.
Microscopy (Oxf). 2023 Jun 8;72(3):191-203. doi: 10.1093/jmicro/dfac075.
Orthohantaviruses are important zoonotic pathogens responsible for a considerable disease burden globally. Partly due to our incomplete understanding of orthohantavirus replication, there is currently no effective antiviral treatment available. Recently, novel microscopy techniques and cutting-edge, automated image analysis algorithms have emerged, enabling to study cellular, subcellular and even molecular processes in unprecedented detail and depth. To date, fluorescence light microscopy allows us to visualize viral and cellular components and macromolecular complexes in live cells, which in turn enables the study of specific steps of the viral replication cycle such as particle entry or protein trafficking at high temporal and spatial resolution. In this review, we highlight how fluorescence microscopy has provided new insights and improved our understanding of orthohantavirus biology. We discuss technical challenges such as studying live infected cells, give alternatives with recombinant protein expression and highlight future opportunities, for example, the application of super-resolution microscopy techniques, which has shown great potential in studies of different cellular processes and viral pathogens.
正汉坦病毒是重要的人畜共患病病原体,在全球造成了相当大的疾病负担。部分由于我们对正汉坦病毒复制的不完全了解,目前尚无有效的抗病毒治疗方法。最近,新型显微镜技术和先进的自动化图像分析算法已经出现,使得我们能够以前所未有的细节和深度研究细胞、亚细胞甚至分子过程。迄今为止,荧光显微镜使我们能够在活细胞中可视化病毒和细胞成分以及大分子复合物,这反过来又使我们能够研究病毒复制周期的特定步骤,如颗粒进入或蛋白质运输,具有高时间和空间分辨率。在这篇综述中,我们强调了荧光显微镜如何提供新的见解并提高我们对正汉坦病毒生物学的理解。我们讨论了研究活感染细胞的技术挑战,提供了使用重组蛋白表达的替代方法,并强调了未来的机会,例如超分辨率显微镜技术的应用,该技术在不同细胞过程和病毒病原体的研究中显示出巨大的潜力。