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一种用于在活的HepG-2细胞中鉴别检测亚硫酸根和亚硫酸氢根的线粒体靶向双位点荧光探针。

A mitochondrion-targeted dual-site fluorescent probe for the discriminative detection of SO and HSO in living HepG-2 cells.

作者信息

Deng Zhenmei, Li Fangzhao, Zhao Guomin, Yang Wenge, Hu Yonghong

机构信息

College of Biotechnology and Pharmaceutical Engineering, Nanjing Tech University No. 30, South Puzhu Road Nanjing 211816 China

出版信息

RSC Adv. 2020 Jul 14;10(44):26349-26357. doi: 10.1039/d0ra01233e. eCollection 2020 Jul 9.

Abstract

Sulfur dioxide, known as an environmental pollutant, produced during industrial productions is also a common food additive that is permitted worldwide. In living organisms, sulfur dioxide forms hydrates of sulfite (SO·HO), bisulfite (HSO ) and sulfite (SO ) under physiological pH conditions; these three exist in a dynamic balance and play a role in maintaining redox balance, further participating in a wide range of physiological and pathological processes. On the basis of the differences in nucleophilicity between SO and HSO , for the first time, we built a mitochondrion-targeted dual-site fluorescent probe (Mito-CDTH-CHO) based on benzopyran for the highly specific detection of SO and HSO with two diverse emission channels. Mito-CDTH-CHO can discriminatively respond to the levels of HSO and SO . Besides, its advantages of low cytotoxicity, superior biocompatibility and excellent mitochondrial enrichment ability contribute to the detection and observation of the distribution of sulfur dioxide derivatives in living organisms as well as allowing further studies on the physiological functions of sulfur dioxide.

摘要

二氧化硫作为一种环境污染物,在工业生产过程中产生,同时也是一种在全球范围内都被允许使用的常见食品添加剂。在生物体内,二氧化硫在生理pH条件下会形成亚硫酸水合物(SO·HO)、亚硫酸氢盐(HSO)和亚硫酸盐(SO);这三种物质存在动态平衡,并在维持氧化还原平衡中发挥作用,进而参与广泛的生理和病理过程。基于SO和HSO亲核性的差异,我们首次构建了一种基于苯并吡喃的线粒体靶向双位点荧光探针(Mito-CDTH-CHO),用于通过两个不同的发射通道对SO和HSO进行高特异性检测。Mito-CDTH-CHO能够区分HSO和SO的水平。此外,它具有低细胞毒性、优异的生物相容性和出色的线粒体富集能力等优点,有助于检测和观察生物体内二氧化硫衍生物的分布,并进一步研究二氧化硫的生理功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36dc/9055423/b5a820e1eede/d0ra01233e-s1.jpg

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