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DNA 条码荧光显微镜用于空间组学。

DNA-Barcoded Fluorescence Microscopy for Spatial Omics.

机构信息

Department of Physics and Center for Nanoscience, Ludwig Maximilian University, Geschwister-Scholl-Platz 1, Munich, 80539, Germany.

Max Planck Institute of Biochemistry, Am Klopferspitz 18, Martinsried, 82152, Germany.

出版信息

Proteomics. 2020 Dec;20(23):e1900368. doi: 10.1002/pmic.201900368. Epub 2020 Oct 26.

Abstract

Innovation in genomics, transcriptomics, and proteomics research has created a plethora of state-of-the-art techniques such as nucleic acid sequencing and mass-spectrometry-based proteomics with paramount impact in the life sciences. While current approaches yield quantitative abundance analysis of biomolecules on an almost routine basis, coupling this high content to spatial information in a single cell and tissue context is challenging. Here, current implementations of spatial omics are discussed and recent developments in the field of DNA-barcoded fluorescence microscopy are reviewed. Light is shed on the potential of DNA-based imaging techniques to provide a comprehensive toolbox for spatial genomics and transcriptomics and discuss current challenges, which need to be overcome on the way to spatial proteomics using high-resolution fluorescence microscopy.

摘要

基因组学、转录组学和蛋白质组学研究的创新已经创造了大量的最先进的技术,如核酸测序和基于质谱的蛋白质组学,这些技术对生命科学产生了至关重要的影响。虽然目前的方法可以在几乎常规的基础上定量分析生物分子的丰度,但将这种高含量与单个细胞和组织中的空间信息相结合是具有挑战性的。在这里,讨论了当前的空间组学实现,并回顾了 DNA 编码荧光显微镜领域的最新进展。本文还探讨了基于 DNA 的成像技术的潜力,以提供一个全面的工具包,用于空间基因组学和转录组学,并讨论了当前的挑战,这些挑战需要在使用高分辨率荧光显微镜进行空间蛋白质组学的过程中得到克服。

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