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细胞器靶向比率荧光探针:设计原理、检测机制、生物应用及挑战

Organelle-targeting ratiometric fluorescent probes: design principles, detection mechanisms, bio-applications, and challenges.

作者信息

Goshisht Manoj Kumar, Tripathi Neetu, Patra Goutam Kumar, Chaskar Manohar

机构信息

Department of Chemistry, Natural and Applied Sciences, University of Wisconsin-Green Bay 2420 Nicolet Drive Green Bay WI 54311-7001 USA

Department of Chemistry, Government Naveen College Tokapal Bastar Chhattisgarh 494442 India

出版信息

Chem Sci. 2023 May 12;14(22):5842-5871. doi: 10.1039/d3sc01036h. eCollection 2023 Jun 7.

Abstract

Biological species, including reactive oxygen species (ROS), reactive sulfur species (RSS), reactive nitrogen species (RNS), F, Pd, Cu, Hg, and others, are crucial for the healthy functioning of cells in living organisms. However, their aberrant concentration can result in various serious diseases. Therefore, it is essential to monitor biological species in cellular organelles such as the cell membrane, mitochondria, lysosome, endoplasmic reticulum, Golgi apparatus, and nucleus. Among various fluorescent probes for species detection within the organelles, ratiometric fluorescent probes have drawn special attention as a potential way to get beyond the drawbacks of intensity-based probes. This method depends on measuring the intensity change of two emission bands (caused by an analyte), which produces an efficient internal referencing that increases the detection's sensitivity. This review article discusses the literature publications (from 2015 to 2022) on organelle-targeting ratiometric fluorescent probes, the general strategies, the detecting mechanisms, the broad scope, and the challenges currently faced by fluorescent probes.

摘要

生物活性物质,包括活性氧(ROS)、活性硫(RSS)、活性氮(RNS)、氟、钯、铜、汞等,对于生物体细胞的健康运作至关重要。然而,它们浓度异常会导致各种严重疾病。因此,监测细胞膜、线粒体、溶酶体、内质网、高尔基体和细胞核等细胞器中的生物活性物质至关重要。在用于细胞器内物质检测的各种荧光探针中,比率型荧光探针作为克服基于强度的探针缺点的一种潜在方法而备受关注。该方法依赖于测量两个发射带(由分析物引起)的强度变化,从而产生有效的内部参照,提高检测灵敏度。本文综述了2015年至2022年期间关于细胞器靶向比率型荧光探针的文献出版物、一般策略、检测机制、广泛应用范围以及荧光探针目前面临的挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e82/10246671/daef4cf6c7f8/d3sc01036h-f1.jpg

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