A mitochondria-targeting near-infrared multifunctional fluorescent probe based on carbazole and its application in biological imaging.

IF 4.6
Yun Dong, Zhiqi Zhou, Yana Tao, Weiju Zhu, Cun Li, Min Fang
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Abstract

Polarity, viscosity and peroxynitrite (ONOO-) are key factors in determining mitochondrial function and activity, and real-time monitoring of these parameters is important for gaining insight into the physiological mechanisms involved. In this study, we developed a new multifunctional fluorescent probe CNB-2 for monitoring mitochondrial polarity, viscosity, and ONOO- level fluctuations. CNB-2 demonstrated robust responses to polarity and viscosity, with its fluorescence intensity exhibiting a strong linear correlation to the logarithm of polarity parameters and viscosity, increasing significantly as these parameters rise. Notably, for ONOO- detection, CNB-2 is characterized by rapid response, high selectivity, a low detection limit (51.3 nM), and a large Stokes shift (130 nm). Moreover, CNB-2 can be used for live cell imaging of mitochondrial polarity, viscosity, and ONOO-, as well as monitoring of changes in ONOO- concentration in real-time during ferroptosis. Therefore, the prepared probe CNB-2 provides a reliable tool for better understanding the mitochondrial microenvironment and a new way for diagnosing ferroptosis-related diseases.

一种基于咔唑的线粒体靶向近红外多功能荧光探针及其在生物成像中的应用。
极性、粘度和过氧亚硝酸盐(ONOO-)是决定线粒体功能和活性的关键因素,实时监测这些参数对于深入了解所涉及的生理机制非常重要。在这项研究中,我们开发了一种新的多功能荧光探针CNB-2,用于监测线粒体极性,粘度和ONOO水平的波动。CNB-2对极性和粘度表现出强大的响应,其荧光强度与极性参数和粘度的对数呈很强的线性相关,随着这些参数的增加而显著增加。值得注意的是,对于ONOO-检测,CNB-2具有快速响应,高选择性,低检测限(51.3 nM)和大Stokes位移(130 nM)的特点。此外,CNB-2可用于线粒体极性、黏度和ONOO-的活细胞成像,以及实时监测铁下垂过程中ONOO-浓度的变化。因此,制备的探针CNB-2为更好地了解线粒体微环境提供了可靠的工具,并为铁衰相关疾病的诊断提供了新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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