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通过频率调制原子力显微镜对纳米生物界面进行亚纳米尺度成像。

Subnanometer-scale imaging of nanobio-interfaces by frequency modulation atomic force microscopy.

作者信息

Fukuma Takeshi

机构信息

Nano Life Science Institute (WPI-NanoLSI), Kanazawa University, Kakuma-machi, Kanazawa 920-1192, Japan.

出版信息

Biochem Soc Trans. 2020 Aug 28;48(4):1675-1682. doi: 10.1042/BST20200155.

Abstract

Recently, there have been significant advancements in dynamic-mode atomic force microscopy (AFM) for biological applications. With frequency modulation AFM (FM-AFM), subnanometer-scale surface structures of biomolecules such as secondary structures of proteins, phosphate groups of DNAs, and lipid-ion complexes have been directly visualized. In addition, three-dimensional AFM (3D-AFM) has been developed by combining a high-resolution AFM technique with a 3D tip scanning method. This method enabled visualization of 3D distributions of water (i.e. hydration structures) with subnanometer-scale resolution on various biological molecules such as lipids, proteins, and DNAs. Furthermore, 3D-AFM also allows visualization of subnanometer-scale 3D distributions of flexible surface structures such as thermally fluctuating lipid headgroups. Such a direct local information at nano-bio interfaces can play a critical role in determining the atomic- or molecular-scale model to explain interfacial structures and functions. Here, we present an overview of these recent advancements in the dynamic-mode AFM techniques and their biological applications.

摘要

最近,用于生物应用的动态模式原子力显微镜(AFM)取得了重大进展。利用调频原子力显微镜(FM-AFM),已经直接观察到了生物分子的亚纳米级表面结构,如蛋白质的二级结构、DNA的磷酸基团和脂质-离子复合物。此外,通过将高分辨率AFM技术与三维探针扫描方法相结合,开发出了三维原子力显微镜(3D-AFM)。这种方法能够以亚纳米级分辨率观察各种生物分子(如脂质、蛋白质和DNA)上的水的三维分布(即水合结构)。此外,3D-AFM还能够观察到柔性表面结构(如热波动的脂质头部基团)的亚纳米级三维分布。这种在纳米-生物界面的直接局部信息对于确定解释界面结构和功能的原子或分子尺度模型可能起着关键作用。在此,我们概述了动态模式AFM技术的这些最新进展及其生物应用。

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