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用于分子组装体的显微成像技术:电子显微镜、原子力显微镜和共聚焦显微镜。

Microscopic Imaging Techniques for Molecular Assemblies: Electron, Atomic Force, and Confocal Microscopies.

作者信息

Kubota Ryou, Tanaka Wataru, Hamachi Itaru

机构信息

Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Katsura, Nishikyo-ku, Kyoto 615-8510, Japan.

JST-ERATO, Hamachi Innovative Molecular Technology for Neuroscience, Kyoto University, Katsura, Nishikyo-ku, Kyoto 615-8530, Japan.

出版信息

Chem Rev. 2021 Nov 24;121(22):14281-14347. doi: 10.1021/acs.chemrev.0c01334. Epub 2021 May 4.

Abstract

Self-assembly is promising for construction of a wide variety of supramolecular assemblies, whose 1D/2D/3D structures are typically relevant to their functions. In-depth understanding of their structure-function relationships is essential for rational design and development of functional molecular assemblies. Microscopic imaging has been used as a powerful tool to elucidate structures of individual molecular assemblies with subnanometer to millimeter resolution, which is complementary to conventional spectroscopic techniques that provide the ensemble structural information. In this review, we highlight the representative examples of visualization of molecular assemblies by use of electron microscopy, atomic force microscopy, confocal microscopy, and super-resolution microscopy. This review comprehensively describes imaging of supramolecular nanofibers/gels, micelles/vesicles, coacervate droplets, polymer assemblies, and protein/DNA assemblies. Advanced imaging techniques that can address key challenges, like evaluation of dynamics of molecular assemblies, multicomponent self-assembly, and self-assembly/disassembly in complex cellular milieu, are also discussed. We believe this review would provide guidelines for deeper structural analyses of molecular assemblies to develop the next-generation materials.

摘要

自组装对于构建各种各样的超分子组装体很有前景,其一维/二维/三维结构通常与其功能相关。深入理解它们的结构-功能关系对于功能分子组装体的合理设计和开发至关重要。显微成像已被用作一种强大的工具,以亚纳米到毫米的分辨率阐明单个分子组装体的结构,这与提供整体结构信息的传统光谱技术互为补充。在这篇综述中,我们重点介绍了使用电子显微镜、原子力显微镜、共聚焦显微镜和超分辨率显微镜对分子组装体进行可视化的代表性实例。这篇综述全面描述了超分子纳米纤维/凝胶、胶束/囊泡、凝聚液滴、聚合物组装体以及蛋白质/DNA组装体的成像。还讨论了能够应对关键挑战的先进成像技术,如评估分子组装体的动力学、多组分自组装以及在复杂细胞环境中的自组装/解组装。我们相信这篇综述将为分子组装体的更深入结构分析提供指导,以开发下一代材料。

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