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利用溶致变色光学试剂监测动态肝损伤进展中的极性变化。

Utilizing a Solvatochromic Optical Agent to Monitor the Polarity Changes in Dynamic Liver Injury Progression.

机构信息

Institute of Fluorescent Probes for Biological Imaging, School of Chemistry and Chemical Engineering, School of Materials Science and Engineering, University of Jinan, Jinan, Shandong 250022, People's Republic of China.

Guangxi Key Laboratory of Electrochemical Energy Materials, Institute of Optical Materials and Chemical Biology, School of Chemistry and Chemical Engineering, Guangxi University, Nanning, Guangxi 530004, People's Republic of China.

出版信息

ACS Appl Bio Mater. 2021 Apr 19;4(4):3630-3638. doi: 10.1021/acsabm.1c00130. Epub 2021 Mar 17.

Abstract

Unraveling the changing rule of endoplasmic reticulum (ER) polarity is of significance for liver injury. However, the rule of the ER polarity changes during the occurrence and progression of liver injury remains a mystery. Toward that, a unique fluorescent probe, , capable of imaging ER polarity in multiple liver injury models with high accuracy and fidelity was designed herein. In light of its excellent solvatochromism, the ER polarity was determined to be higher in the case of endoplasmic reticulum stress (ERS) induced by tunicamycin and dithiothreitol than that of the normal state at the cell level. Importantly, with the assistance of the PerkinElmer IVIS Spectrum imaging system and the powerful tool of , our work first revealed that the ER polarity increases with the evolution of liver injuries. Moreover, as a demonstration, achieved evaluating hepatoprotective drug efficacy by detecting ER polarity, confirming its high clinical application prospect. Thus, our work not only first unravels the rule of ER polarity in dynamic liver injury progression but may also inspire more diagnostic and therapeutic programs for liver diseases shortly.

摘要

揭示内质网 (ER) 极性变化的规律对肝损伤具有重要意义。然而,ER 极性在肝损伤发生和进展过程中的变化规律仍不清楚。针对这一问题,本文设计了一种独特的荧光探针 ,能够在多种肝损伤模型中以高精度和高保真度对 ER 极性进行成像。鉴于其出色的溶致变色性,在细胞水平上,与正常状态相比,衣霉素和二硫苏糖醇诱导的内质网应激 (ERS) 导致 ER 极性更高。重要的是,借助 PerkinElmer IVIS Spectrum 成像系统和 的强大工具,我们的工作首次揭示了 ER 极性随肝损伤演变而增加。此外,作为一个例证,通过检测 ER 极性, 实现了对肝保护药物疗效的评估,证实了其具有很高的临床应用前景。因此,我们的工作不仅首次揭示了 ER 极性在动态肝损伤进展中的规律,而且可能很快为肝脏疾病的诊断和治疗方案提供更多的启示。

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