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Ubiquinone-quantum dot bioconjugates for in vitro and intracellular complex I sensing

机译:泛醌-量子点生物缀合物用于体外和细胞内复合物I传感

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Quantum dots (QDs) have attracted increasing interest in bioimaging and sensing. Here, we report a biosensor of complex I using ubiquinone-terminated disulphides with different alkyl spacers (QnNS, n = 2, 5 and 10) as surface-capping ligands to functionalise CdSe/ZnS QDs. The enhancement or quenching of the QD bioconjugates fluorescence changes as a function of the redox state of QnNS, since QDs are highly sensitive to the electron-transfer processes. The bioconjugated QnNS-QDs emission could be modulated by complex I in the presence of NADH, which simulates an electron-transfer system part of the mitochondrial respiratory chain, providing an in vitro and intracellular complex I sensor. Epidemiological studies suggest that Parkinson's patients have the impaired activity of complex I in the electron-transfer chain of mitochondria. We have demonstrated that the QnNS-QDs system could aid in early stage Parkinson's disease diagnosis and progression monitoring by following different complex I levels in SH-SY5Y cells.
机译:量子点(QD)在生物成像和传感领域引起了越来越多的兴趣。在这里,我们报道了一种具有复杂I的生物传感器,该传感器使用具有不同烷基间隔基(Q NS,n = 2、5和10)的泛醌封端的二硫化物作为表面覆盖配体来官能化CdSe / ZnS QD。 QD生物共轭物荧光的增强或猝灭随Q n NS的氧化还原状态而变化,因为QD对电子转移过程高度敏感。在NADH存在下,复合物I可以调节生物共轭的Q n NS-QDs的发射,该复合物模拟线粒体呼吸链的电子传递系统部分,提供了体外和细胞内复合物I传感器。流行病学研究表明,帕金森氏症患者的线粒体电子转移链中复合物I的活性受损。我们已经证明,Q n NS-QDs系统可以通过跟踪SH-SY5Y细胞中不同的I复杂程度来帮助帕金森氏病的早期诊断和进展监测。

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