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基于微芯片电泳-激光诱导荧光法测定凋亡 HepG2 细胞和 PC12 细胞线粒体区室中活性氧和氮物种的同时测定。

Simultaneous determination of reactive oxygen and nitrogen species in mitochondrial compartments of apoptotic HepG2 cells and PC12 cells based on microchip electrophoresis-laser-induced fluorescence.

机构信息

College of Chemistry, Chemical Engineering and Materials Science, Key Laboratory of Molecular and Nano Probes, Ministry of Education, Engineering Research Center of Pesticide and Medicine Intermediate Clean Production, Ministry of Education, Shandong Normal University, Jinan 250014, People's Republic of China.

出版信息

Anal Chem. 2012 Jun 5;84(11):4687-94. doi: 10.1021/ac300255n. Epub 2012 May 10.

Abstract

Determination of intracellular bioactive species will afford beneficial information related to cell metabolism, signal transduction, cell function, and disease treatment. In this study, the first application of a microchip electrophoresis-laser-induced fluorescence (MCE-LIF) method for concurrent determination of reactive oxygen species (ROS) and reactive nitrogen species (RNS), i.e., superoxide (O(2)(-•)) and nitric oxide (NO) in mitochondria, was developed using fluorescent probes 2-chloro-1,3-dibenzothiazolinecyclohexene (DBZTC) and 3-amino,4-aminomethyl-2',7'-difluorescein (DAF-FM), respectively. Potential interference of intracellular dehydroascorbic acid (DHA) and ascorbic acid (AA) for NO detection with DAF-FM was eliminated through oxidation of AA with the addition of ascorbate oxidase, followed by subsequent MCE separation. Fluorescent products of O(2)(-•) and NO, DBZTC oxide (DBO), and DAF-FM triazole (DAF-FMT) showed excellent baseline separation within 1 min with a running buffer of 40 mM Tris solution (pH 7.4) and a separating electric field of 500 V/cm. The levels of DBO and DAF-FMT in mitochondria isolated from normal HepG2 cells and PC12 cells were evaluated using this method. Furthermore, the changes of DBO and DAF-FMT levels in mitochondria isolated from apoptotic HepG2 cells and PC12 cells could also be detected. The current approach was proved to be simple, fast, reproducible, and efficient. Measurement of the two species with the method will be beneficial to understand ROS/RNS distinctive functions. In addition, it will provide new insights into the role that both species play in biological systems.

摘要

测定细胞内生物活性物质将提供与细胞代谢、信号转导、细胞功能和疾病治疗相关的有益信息。在这项研究中,首次应用微芯片电泳-激光诱导荧光(MCE-LIF)方法同时测定线粒体中的活性氧(ROS)和活性氮(RNS),即超氧阴离子(O2(-•))和一氧化氮(NO),使用荧光探针 2-氯-1,3-二苯并噻唑环庚烯(DBZTC)和 3-氨基-4-氨基甲基-2',7'-二氟荧光素(DAF-FM)分别。通过添加抗坏血酸氧化酶氧化 AA 消除了 DAF-FM 检测 NO 时细胞内脱氢抗坏血酸(DHA)和抗坏血酸(AA)的潜在干扰,然后进行后续的 MCE 分离。O2(-•)和 NO 的荧光产物 DBZTC 氧化物(DBO)和 DAF-FM 三唑(DAF-FMT)在 40 mM Tris 溶液(pH 7.4)和 500 V/cm 的分离电场下 1 分钟内显示出极好的基线分离。使用该方法评估了正常 HepG2 细胞和 PC12 细胞线粒体中 DBO 和 DAF-FMT 的水平。此外,还可以检测凋亡 HepG2 细胞和 PC12 细胞线粒体中 DBO 和 DAF-FMT 水平的变化。该方法简单、快速、重现性好、效率高。用该方法测定两种物质将有助于了解 ROS/RNS 独特的功能。此外,它将为这两种物质在生物系统中的作用提供新的见解。

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