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用于线粒体和溶酶体成像的荧光探针设计策略

Fluorescent Probes Design Strategies for Imaging Mitochondria and Lysosomes.

作者信息

Chen Huimin, Yu Zhenjie, Ren Shiwei, Qiu Yuyu

机构信息

Institute of Materia Medica, Science and Technology Innovation Center, Shandong First Medical University and Shandong Academy of Medical Sciences, Jinan, China.

Department of Biochemistry, Shandong First Medical University and Shandong Academy of Medical Sciences, Tai'an, China.

出版信息

Front Pharmacol. 2022 Jul 19;13:915609. doi: 10.3389/fphar.2022.915609. eCollection 2022.

Abstract

Modern cellular biology faces several major obstacles, such as the determination of the concentration of active sites corresponding to chemical substances. In recent years, the popular small-molecule fluorescent probes have completely changed the understanding of cellular biology through their high sensitivity toward specific substances in various organisms. Mitochondria and lysosomes are significant organelles in various organisms, and their interaction is closely related to the development of various diseases. The investigation of their structure and function has gathered tremendous attention from biologists. The advanced nanoscopic technologies have replaced the diffraction-limited conventional imaging techniques and have been developed to explore the unknown aspects of mitochondria and lysosomes with a sub-diffraction resolution. Recent progress in this field has yielded several excellent mitochondria- and lysosome-targeted fluorescent probes, some of which have demonstrated significant biological applications. Herein, we review studies that have been carried out to date and suggest future research directions that will harness the considerable potential of mitochondria- and lysosome-targeted fluorescent probes.

摘要

现代细胞生物学面临着几个主要障碍,比如确定与化学物质相对应的活性位点浓度。近年来,流行的小分子荧光探针凭借其对各种生物体中特定物质的高灵敏度,彻底改变了人们对细胞生物学的理解。线粒体和溶酶体是各种生物体中的重要细胞器,它们之间的相互作用与各种疾病的发展密切相关。对它们的结构和功能的研究引起了生物学家的极大关注。先进的纳米技术已经取代了受衍射限制的传统成像技术,并已被开发用于以亚衍射分辨率探索线粒体和溶酶体的未知方面。该领域的最新进展已经产生了几种出色的靶向线粒体和溶酶体的荧光探针,其中一些已展示出重要的生物学应用。在此,我们综述了迄今为止已开展的研究,并提出了未来的研究方向,这些方向将利用靶向线粒体和溶酶体的荧光探针的巨大潜力。

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