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使用新型近红外发射探针实时追踪中暑和氧化还原应激下溶酶体pH值的变化

Real-time tracking lysosomal pH changes under heatstroke and redox stress with a novel near-infrared emissive probe.

作者信息

Xia Qingfeng, Feng Shumin, Hong Jiaxin, Feng Guoqiang

机构信息

Key Laboratory of Pesticide and Chemical Biology of Ministry of Education, College of Chemistry, Central China Normal University, 152 Luoyu Road, Wuhan, 430079, PR China.

Key Laboratory of Pesticide and Chemical Biology of Ministry of Education, College of Chemistry, Central China Normal University, 152 Luoyu Road, Wuhan, 430079, PR China.

出版信息

Talanta. 2021 Jun 1;228:122184. doi: 10.1016/j.talanta.2021.122184. Epub 2021 Feb 16.

Abstract

Lysosomes are important subcellular organelles with acidic pH. The change of lysosomal pH can affect the normal function and activity of cells. To conveniently detect and visualize lysosomal pH changes, we designed herein a novel fluorescent probe NIR-Rh-LysopH. The probe is based on a Rhodamine 101 derivative, which was modified to include a fused tetrahydroquinoxaline ring to obtain near-infrared fluorescence and a methylcarbitol moiety to locate the lysosome. Based on the proton-induced spirolactam ring-opening mechanism, NIR-Rh-LysopH showed rapid, selective, sensitive, and reversible near-infrared fluorescence responses around 686 nm (Stokes shift 88 nm) with a pKa value of 5.70. From pH 7.4 to 4.0, about 285 folds of fluorescence enhancement was observed. Cell experiments showed that NIR-Rh-LysopH has low cytotoxicity and excellent lysosome-targeting ability. Moreover, NIR-Rh-LysopH was applied successfully to track lysosomal pH changes induced by drugs (such as chloroquine and dexamethasone), heatstroke, and redox stress. Thus, NIR-Rh-LysopH is very promising for conveniently tracking lysosomal pH changes and studying the related life processes.

摘要

溶酶体是重要的具有酸性pH值的亚细胞器。溶酶体pH值的变化会影响细胞的正常功能和活性。为了方便地检测和可视化溶酶体pH值的变化,我们在此设计了一种新型荧光探针NIR-Rh-LysopH。该探针基于罗丹明101衍生物,经过修饰以包含稠合的四氢喹喔啉环以获得近红外荧光,并包含甲基卡必醇部分以定位溶酶体。基于质子诱导的螺内酰胺开环机制,NIR-Rh-LysopH在686 nm附近(斯托克斯位移88 nm)显示出快速、选择性、灵敏且可逆的近红外荧光响应,pKa值为5.70。从pH 7.4到4.0,观察到荧光增强约285倍。细胞实验表明,NIR-Rh-LysopH具有低细胞毒性和优异的溶酶体靶向能力。此外,NIR-Rh-LysopH已成功应用于追踪由药物(如氯喹和地塞米松)、中暑和氧化还原应激引起的溶酶体pH值变化。因此,NIR-Rh-LysopH在方便地追踪溶酶体pH值变化和研究相关生命过程方面非常有前景。

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