Application of advanced bioimaging technologies in viral infections

IF 10 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Yu Sun , Can Cao , Yilin Peng , Xuyao Dai , Xiaoke Li , Jing Li , Tengxiao Liang , Ping Song , Yongan Ye , Jinsheng Yang , Ning Li , Ruodan Xu
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Abstract

Viruses are major pathogens responsible for a wide range of infectious diseases that may lead to global pandemics. The understanding of structural underpinnings of virions, molecular mechanisms of infection and the pathogenesis of viral diseases is crucial for exploring prophylactic and therapeutic approaches for viral disorders. Though the latest developments in imaging techniques have equipped scientists with tools to investigate viral infections in unprecedented detail with multiple spatial and temporal resolutions, the unveiling of how viral particles dynamically interact with host cells requires integrations of strategies connecting the structural complexity with functional properties. Here, we aim to delineate (1) the diversity of imaging devices that have been applied in the investigation of viral morphology and structure, (2) the contribution of current imaging techniques in revealing features of viral life-cycle and the associated host reactions, and (3) the potential of imaging systems in the diagnosis and prognosis of viral diseases. This review provides an essential overview of bioimaging techniques in scenarios of viral infections and comes up with instructions of how to select appropriate bioimaging methods for virological studies based on specific objectives of investigations. Additionally, we discuss the challenges and opportunities of microscopy imaging in promoting more insightful comprehension of complexities between viruses and hosts in the nano-scale range.

Abstract Image

Abstract Image

先进生物成像技术在病毒感染中的应用
病毒是导致多种传染病的主要病原体,可能会导致全球大流行。了解病毒的结构基础、感染的分子机制和病毒性疾病的发病机理,对于探索病毒性疾病的预防和治疗方法至关重要。虽然成像技术的最新发展为科学家们提供了以多种空间和时间分辨率对病毒感染进行前所未有的详细研究的工具,但要揭示病毒颗粒如何与宿主细胞动态交互,需要将结构复杂性与功能特性相结合的策略。在此,我们旨在阐述:(1) 应用于研究病毒形态和结构的成像设备的多样性;(2) 当前成像技术在揭示病毒生命周期特征和相关宿主反应方面的贡献;(3) 成像系统在病毒性疾病诊断和预后方面的潜力。这篇综述对病毒感染情况下的生物成像技术进行了基本概述,并说明了如何根据具体的研究目标为病毒学研究选择合适的生物成像方法。此外,我们还讨论了显微成像在促进更深入地理解纳米尺度范围内病毒与宿主之间的复杂性方面所面临的挑战和机遇。
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来源期刊
Materials Today Physics
Materials Today Physics Materials Science-General Materials Science
CiteScore
14.00
自引率
7.80%
发文量
284
审稿时长
15 days
期刊介绍: Materials Today Physics is a multi-disciplinary journal focused on the physics of materials, encompassing both the physical properties and materials synthesis. Operating at the interface of physics and materials science, this journal covers one of the largest and most dynamic fields within physical science. The forefront research in materials physics is driving advancements in new materials, uncovering new physics, and fostering novel applications at an unprecedented pace.
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