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Quantification of cysteine hydropersulfide with a ratiometric near-infrared fluorescent probe based on selenium-sulfur exchange reaction

机译:基于硒-硫交换反应的比例式近红外荧光探针定量测定半胱氨酸氢过氧化物

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摘要

Cysteine hydropersulfide (Cys-SSH) plays primary roles in the synthesis of sulfur-containing cofactors, regulation of cellular signaling, activation or inactivation of enzyme activities, and modulation of cellular redox milieu. However, its biofunctions need to be further addressed due to the fact that many issues remain to be clarified. Herein, we conceive a novel ratiometric near-infrared fluorescent probe Cy-Dise for the sensitive and selective detection of Cys-SSH in living cells and in vivo for the first time. Cy-Dise is composed of three moieties: bis(2-hydroxyethyl) diselenide, heptamethine cyanine, and D-galactose. Cy-Dise exhibits a satisfactory linear ratio response to Cys-SSH via a selenium-sulfur exchange reaction in the range of 0-12 mu M Cys-SSH. The experimental detection limit is determined to be 0.12 mu M. The results of ratio imaging analyses confirm the qualitative and quantitative detection capabilities of Cy-Dise in HepG2 cells, HL-7702 cells, and primary hepatocytes. The level changes of Cys-SSH in cells stimulated by some related reagents are also observed. The probe is also suitable for deep tissue ratio imaging. Organ targeting tests with Cy-Dise in normal Spraque-Dawley (SD) rats and Walker-256 tumor SD rats verify its predominant localization in the liver. The probe is promising for revealing the roles of Cys-SSH in physiological and pathological processes.
机译:半胱氨酸氢过硫化物(Cys-SSH)在含硫辅因子的合成,细胞信号传导的调节,酶活性的激活或失活以及细胞氧化还原环境的调节中起主要作用。但是,由于许多问题有待澄清,因此需要进一步解决其生物功能。在本文中,我们首次构思了一种新颖的比率式近红外荧光探针Cy-Dise,用于在活细胞和体内敏感和选择性地检测Cys-SSH。 Cy-Dise由三个部分组成:双(2-羟乙基)二硒化物,七甲胺花菁和D-半乳糖。 Cy-Dise在0-12μMCys-SSH范围内通过硒-硫交换反应对Cys-SSH表现出令人满意的线性比率响应。实验检测极限确定为0.12μM。比率成像分析的结果证实了Cy-Dise在HepG2细胞,HL-7702细胞和原代肝细胞中的定性和定量检测能力。还观察到一些相关试剂刺激的细胞中Cys-SSH的水平变化。该探头还适用于深层组织比率成像。在正常Spraque-Dawley(SD)大鼠和Walker-256肿瘤SD大鼠中用Cy-Dise进行的器官靶向测试证实了其在肝脏中的主要定位。该探针有望揭示Cys-SSH在生理和病理过程中的作用。

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