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刚性荧光团-分子转子探针的合理设计用于粘性体系中二氧化硫的高信噪比检测。

Rational Design of a Rigid Fluorophore-Molecular Rotor-Based Probe for High Signal-to-Background Ratio Detection of Sulfur Dioxide in Viscous System.

机构信息

Institute of Fluorescent Probes for Biological Imaging, School of Chemistry and Chemical Engineering, School of Materials Science and Engineering , University of Jinan , Jinan , Shandong 250022 , P. R. China.

出版信息

Anal Chem. 2019 Dec 3;91(23):15220-15228. doi: 10.1021/acs.analchem.9b04103. Epub 2019 Nov 14.

Abstract

Many viscous microenvironments exist in living systems. For instance, at the cellular level, the viscosity of subcellular organelles (mitochondria, lysosomes, endoplasmic reticulum, nucleus, etc.) is much greater than that of cytoplasm; at the organismal level, compared with normal states of health, blood, or lymphatic fluid viscosity will increase to some extent in diabetes, hypertension, inflammation, tumors, and so on. However, due to the design shortcoming, there is a lack of efficient tools for detecting biomolecules in viscous living systems. Herein, we propose a rational design strategy for constructing ratiometric fluorescent probes with superior response signal-to-background (S/B) ratio in viscous systems based on rigid-fluorophore-molecular rotor platform, and a practical sulfur dioxide (SO) probe (RFC-MRC) based on conmarin-cyanine dyad was prepared as a proof-of-concept. The probe performs a significant enhancement (71.5-fold) of ratiometric response signal stimulated by SO in viscous aqueous media. The cationic probe can selectively in mitochondria and was successfully utilized to sense SO in living HeLa cells through ratiometric fluorescence imaging. What's more, in the fluorescence imaging experiments of monitoring SO in apoptotic cells using probe RFC-MRC, a more obvious superior of S/B ratio was observed in the early apoptotic cells than in the lately apoptotic cells.

摘要

许多粘性微环境存在于生命系统中。例如,在细胞水平上,亚细胞细胞器(线粒体、溶酶体、内质网、细胞核等)的粘度远远大于细胞质的粘度;在机体水平上,与正常健康状态相比,糖尿病、高血压、炎症、肿瘤等情况下血液或淋巴液的粘度会在一定程度上增加。然而,由于设计上的缺陷,缺乏有效的工具来检测粘性生命系统中的生物分子。在此,我们提出了一种基于刚性荧光团-分子转子平台的合理设计策略,用于构建在粘性体系中具有优异响应信号与背景比(S/B)的比率型荧光探针,并制备了一种基于香豆素-花菁二联体的实际二氧化硫(SO)探针(RFC-MRC)作为概念验证。该探针在粘性水相介质中对 SO 刺激的比率响应信号有显著增强(71.5 倍)。阳离子探针可以选择性地在线粒体中,并成功地通过比率荧光成像用于活 HeLa 细胞中 SO 的检测。更重要的是,在使用探针 RFC-MRC 监测凋亡细胞中 SO 的荧光成像实验中,与晚期凋亡细胞相比,早期凋亡细胞中 S/B 比值的优势更为明显。

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