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用于药物分析和多个生物体系中巯基检测的溶酶体靶向荧光探针。

A lysosome-targeted fluorescent probe for thiol detection in drug analysis and multiple biological systems.

机构信息

College of Pharmacy, Qiqihar Medical University, Qiqihar, 161006, PR China.

Department of Pharmacy, Joint Logistics Support Force 961 Hospital, Qiqihar, 161006, PR China.

出版信息

Anal Bioanal Chem. 2024 Nov;416(26):5763-5777. doi: 10.1007/s00216-024-05495-3. Epub 2024 Aug 28.

Abstract

Biothiols, characterized by their unique sulfhydryl (-SH) groups, possess excellent antioxidant properties, effectively neutralizing the damage to cellular structures caused by reactive oxygen species (ROS) in living organisms. Additionally, lysosomes play a crucial role in decomposing damaged biomolecules through the action of their internal enzymes, regulating the cellular redox state, and mitigating oxidative stress. To facilitate rapid monitoring of intracellular biothiols, particularly within lysosomes, we constructed a lysosome-targeted biothiol fluorescent probe, PHL-DNP, in this study. PHL-DNP exhibited excellent photophysical properties in an aqueous test system, including strong fluorescence enhancement response, excellent selectivity, and low detection limits (Cys 16.5 nM, Hcy 16.8 nM, GSH 21.3 nM, Cap 26.6 nM). These attributes enabled easy and efficient qualification of Cys on test strips and accurate determination of the effective content of captopril tablets. Notably, PHL-DNP demonstrated low cytotoxicity and precise lysosomal targeting. Through bioimaging, PHL-DNP not only monitored changes in biothiol levels under oxidative stress but also assessed biothiols in complex biological systems such as live HeLa cells, zebrafish, tumor tissue sections, and radish roots. This provides a promising tool for quantitative analysis of biothiols, disease marker detection, and drug testing.

摘要

生物硫醇的特征是其独特的巯基(-SH)基团,具有出色的抗氧化性能,可有效中和生物体内活性氧物质(ROS)对细胞结构造成的损害。此外,溶酶体通过内部酶的作用在分解受损生物分子方面起着至关重要的作用,调节细胞的氧化还原状态,减轻氧化应激。为了方便快速监测细胞内生物硫醇,特别是溶酶体内的生物硫醇,我们在本研究中构建了一种溶酶体靶向生物硫醇荧光探针 PHL-DNP。PHL-DNP 在水相测试体系中表现出优异的光物理性质,包括强荧光增强响应、优异的选择性和低检测限(Cys 16.5 nM,Hcy 16.8 nM,GSH 21.3 nM,Cap 26.6 nM)。这些特性使得 Cys 在试条上的定性和卡托普利片有效含量的准确测定变得容易且高效。值得注意的是,PHL-DNP 表现出低细胞毒性和精确的溶酶体靶向性。通过生物成像,PHL-DNP 不仅监测了氧化应激下生物硫醇水平的变化,还评估了复杂生物系统(如活 HeLa 细胞、斑马鱼、肿瘤组织切片和萝卜根)中的生物硫醇。这为生物硫醇的定量分析、疾病标志物检测和药物测试提供了一种很有前途的工具。

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