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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Fluorescence detection of intracellular pH changes in the mitochondria-associated process of mitophagy using a hemicyanine-based fluorescent probe
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Fluorescence detection of intracellular pH changes in the mitochondria-associated process of mitophagy using a hemicyanine-based fluorescent probe

机译:使用血上基于血红蛋白的荧光探针的Mitochondria相关过程细胞内pH变化的荧光检测

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摘要

Intracellular pH behaves as a vital parameter in the physiological and pathological processes. Novel small molecule probes for precise and dynamic monitoring of pH fluctuations in cellular physiological processes are still highly required. Herein, we present a hemicyanine-based probe (HcP-H) detection of the pH changes during the intracellular process of mitochondria-associated autophagy. HcP-H exhibits highly reversible and ratiometric fluorescence detection of pH variation due to the deprotonation/protonation process, showing orange fluorescence (lambda(em) = 557 nm) in basic media (pH 8.0) and green fluorescence (lambda(em), = 530 nm) in acidic media (pH 6.2), respectively. Organelle localization experiment in HeLa cells demonstrates that this probe could selectively accumulate in mitochondria, showing almost overlap with that of Mito-Tracker Green FM. More importantly, Fluorescence imaging of HcP-H in HeLa cells subjected to the nutrient deprivation has demonstrated that this probe could monitor the intracellular pH changes in the mitochondria-associated process of mitophagy. It is clearly confirmed that HcP-H would serve as a promising fluorescent probe for tracing mitophagy in living cells. (C) 2018 Elsevier B.V. All rights reserved.
机译:细胞内pH表现为生理和病理过程中的重要参数。对于细胞生理过程中pH的精确和动态监测的新型小分子探针仍然是非常需要的。在此,我们提出了一种基于血红石的探针(HCP-H)检测在线粒体相关自噬的细胞内过程中的pH变化。 HCP-H由于去质子化/质子化过程而表现出高度可逆且比率的pH变异的荧光检测,显示碱性荧光(pH8.0)和绿色荧光(Lambda(EM),=)中的橙色荧光(Lambda(EM)= 557nm)。分别为酸性介质(pH6.2)的530nm。 Hela细胞中的细胞器本地化实验表明,该探针可以选择性地积聚在线粒体中,表现出几乎与Mito-Tracker绿色FM的重叠。更重要的是,对营养剥夺进行营养剥夺的HCP-H的荧光成像证明了该探针可以监测线粒体相关方法的细胞内pH变化。清楚地证实,HCP-H将作为具有追踪活细胞中的淋巴瘤的有前途的荧光探针。 (c)2018年elestvier b.v.保留所有权利。

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