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DNA-PAINT 超分辨成像技术用于核酸纳米结构的表征。

DNA-PAINT Super-Resolution Imaging for Characterization of Nucleic Acid Nanostructures.

机构信息

School of Chemistry and Chemical Engineering, Frontiers Science Center for Transformative Molecules, Institute of Translational Medicine, Shanghai Jiao Tong University, Dongchuan Road 800, Shanghai, 200240, P. R. China.

WLA Laboratories (World Laureates Association), Shanghai, 201203, P. R. China.

出版信息

Chempluschem. 2022 Aug;87(8):e202200127. doi: 10.1002/cplu.202200127.

Abstract

Numerous nucleic acid nanostructures of unique addressability and programmability have been fabricated for emerging applications. Structural characterization with atomic force microscopy and electron microscopy can provide information on the structural morphology and precision of these nanostructures. However, either structural information of native nucleic acid nanostructures in hydrated environment or the availability of addressable sites on these nanostructures could not be determined. Alternatively, DNA points accumulation for imaging in nanoscale topography (DNA-PAINT) enables direct optical visualization of nucleic acid nanostructures in native forms, as well as evaluation of the accessibility of addressable sites on them. In this Review, the working principle of DNA-PAINT is introduced, followed by the summary on advances of DNA-PAINT characterization of various nucleic acid nanostructures. Finally, the current challenges and prospects for DNA-PAINT characterization are presented. We envision DNA-PAINT to be a potent characterization tool for functional nanomaterials.

摘要

已经制造出了许多具有独特寻址和可编程性的核酸纳米结构,以满足新兴应用的需求。原子力显微镜和电子显微镜的结构表征可以提供这些纳米结构的结构形态和精度信息。然而,在水合环境中天然核酸纳米结构的结构信息或这些纳米结构上可寻址位点的可用性都无法确定。相反,DNA 点积累用于成像纳米形貌(DNA-PAINT)可以直接在天然形式下对核酸纳米结构进行光学可视化,并评估它们上可寻址位点的可及性。在这篇综述中,介绍了 DNA-PAINT 的工作原理,随后总结了 DNA-PAINT 对各种核酸纳米结构的表征进展。最后,提出了 DNA-PAINT 表征目前面临的挑战和展望。我们设想 DNA-PAINT 将成为功能纳米材料的有力表征工具。

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