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Single-molecule tools for enzymology, structural biology, systems biology and nanotechnology: an update

机译:用于酶学,结构生物学,系统生物学和纳米技术的单分子工具:更新

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摘要

Toxicology is the highly interdisciplinary field studying the adverse effects of chemicals on living organisms. It requires sensitive tools to detect such effects. After their initial implementation during the 1990s, single-molecule fluorescence detection tools were quickly recognized for their potential to contribute greatly to many different areas of scientific inquiry. In the intervening time, technical advances in the field have generated ever-improving spatial and temporal resolution and have enabled the application of single-molecule fluorescence to increasingly complex systems, such as live cells. In this review, we give an overview of the optical components necessary to implement the most common versions of single-molecule fluorescence detection. We then discuss current applications to enzymology and structural studies, systems biology, and nanotechnology, presenting the technical considerations that are unique to each area of study, along with noteworthy recent results. We also highlight future directions that have the potential to revolutionize these areas of study by further exploiting the capabilities of single-molecule fluorescence microscopy.
机译:毒理学是研究化学物质对生物体不利影响的高度交叉学科。它需要敏感的工具来检测这种影响。在1990年代首次实施后,单分子荧光检测工具因其在许多不同的科学探究领域做出巨大贡献的潜力而迅速得到认可。在此期间,该领域的技术进步产生了不断提高的空间和时间分辨率,并使单分子荧光能够应用于日益复杂的系统(例如活细胞)。在这篇综述中,我们概述了实现最常见版本的单分子荧光检测所必需的光学组件。然后,我们讨论了当前在酶学和结构研究,系统生物学和纳米技术中的应用,并提出了每个研究领域所独有的技术考虑因素,以及近期值得注意的结果。我们还将重点介绍未来的方向,这些方向可能会通过进一步利用单分子荧光显微镜的功能来彻底改变这些研究领域。

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