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首页> 外文期刊>RSC Advances >Carbon dots-based ratiometric nanosensor for?highly sensitive and selective detection of mercury(ii) ions and glutathione
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Carbon dots-based ratiometric nanosensor for?highly sensitive and selective detection of mercury(ii) ions and glutathione

机译:基于碳点的比率纳米传感器?高敏感和选择性检测汞(II)离子和谷胱甘肽

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Glutathione (GSH) plays a crucial role in many cellular processes. Recently, great efforts have been made to develop efficient methods for GSH sensing in organisms. Herein, we reported the design and application of a specific ratiometric fluorescent probe, which contained carbon quantum dots (CDs) as sensing signal and Rhodamine B (RhB) as reference, for highly sensitive detection of mercury ions (Hg ~(2+) ) and glutathione (GSH). The obtained nanosensor showed characteristic fluorescence emissions of CDs and RhB under a single excitation wavelength. The functional CDs were first synthesized in our laboratory according to a one-pot pyrolysis process of sodium citrate with histidine. In the presence of Hg ~(2+) , only the fluorescence of CDs was quenched due to electron transfer between Hg ~(2+) and functional groups on the surface of CDs. Subsequently, the fluorescence of CDs–Hg ~(2+) system was recovered gradually with the addition of GSH due to their stronger affinity with Hg ~(2+) , which could effectively exclude numerous background interferences. This method has been successfully applied to oxidative stress model investigation. The proposed ratiometric sensing strategy was proven to be facile, reliable, sensitive and selective, showing great potential for Hg ~(2+) and GSH detection in environmental monitoring and biological detection.
机译:谷胱甘肽(GSH)在许多细胞过程中起着至关重要的作用。最近,已经努力制定了在生物体中进行GSH感应的有效方法。在此,我们报道了特定比率荧光探针的设计和应用,其含有碳量子点(CDS)作为感测信号和罗丹明B(RHB)作为参考,用于高敏感的汞离子检测(Hg〜(2+))和谷胱甘肽(GSH)。所得纳米传感器在单一激发波长下显示CDS和RHB的特征荧光发射。根据柠檬酸钠的单壶热解过程,首先在我们的实验室中合成功能性CDS,其中柠檬酸钠与组氨酸。在Hg〜(2+)的存在下,由于CDS表面上的Hg〜(2+)和官能团之间的电子传递,仅淬灭CD的荧光。随后,由于其与Hg〜(2+)的亲和力较强,逐渐回收Cds-Hg〜(2+)系统的荧光,这可以有效排除许多背景干扰。该方法已成功应用于氧化应激模型调查。已证明所提出的比例感测策略是易于,可靠,敏感和选择性的,显示出对环境监测和生物检测中的HG〜(2+)和GSH检测的巨大潜力。

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