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无标记显微镜用于病毒感染研究。

Label-free microscopy for virus infections.

机构信息

Department of Molecular Life Sciences, University of Zürich, Winterthurerstrasse 190, Zürich 8057, Switzerland.

出版信息

Microscopy (Oxf). 2023 Jun 8;72(3):204-212. doi: 10.1093/jmicro/dfad024.

Abstract

Microscopy has been essential to elucidate micro- and nano-scale processes in space and time and has provided insights into cell and organismic functions. It is widely employed in cell biology, microbiology, physiology, clinical sciences and virology. While label-dependent microscopy, such as fluorescence microscopy, provides molecular specificity, it has remained difficult to multiplex in live samples. In contrast, label-free microscopy reports on overall features of the specimen at minimal perturbation. Here, we discuss modalities of label-free imaging at the molecular, cellular and tissue levels, including transmitted light microscopy, quantitative phase imaging, cryogenic electron microscopy or tomography and atomic force microscopy. We highlight how label-free microscopy is used to probe the structural organization and mechanical properties of viruses, including virus particles and infected cells across a wide range of spatial scales. We discuss the working principles of imaging procedures and analyses and showcase how they open new avenues in virology. Finally, we discuss orthogonal approaches that enhance and complement label-free microscopy techniques.

摘要

显微镜对于阐明空间和时间内的微观和纳米尺度过程至关重要,并深入了解了细胞和机体功能。它被广泛应用于细胞生物学、微生物学、生理学、临床科学和病毒学。虽然依赖于标记的显微镜,如荧光显微镜,可以提供分子特异性,但在活样本中进行多重标记仍然很困难。相比之下,非标记显微镜以最小的干扰报告标本的整体特征。在这里,我们讨论了分子、细胞和组织水平的非标记成像方式,包括透射光显微镜、定量相位成像、低温电子显微镜或断层扫描和原子力显微镜。我们强调了非标记显微镜如何用于探测病毒的结构组织和机械特性,包括病毒颗粒和受感染细胞在广泛的空间尺度上。我们讨论了成像程序和分析的工作原理,并展示了它们如何为病毒学开辟新途径。最后,我们讨论了增强和补充非标记显微镜技术的正交方法。

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