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基于双发射碳点的多巴胺比率型荧光传感器的构建及其性能研究

A simple and accurate ratiometric sensor for determination of dopamine based on dual-emission carbon dots.

机构信息

College of Chemistry and Chemical Engineering, Key Laboratory of Analytical Technology and Detection of Yan'an, Yan'an University, Yan'an, 716000, Shaanxi, People's Republic of China.

Medical College of Yan'an University, Yan'an University, Yan'an, 716000, Shaanxi, People's Republic of China.

出版信息

Anal Sci. 2024 Jun;40(6):1023-1030. doi: 10.1007/s44211-023-00492-5. Epub 2024 Mar 2.

Abstract

Dopamine (DA) is a neuromodulatory molecule that plays critical roles in many biological processes. The dysfunctions of the DA system are closely associated with several nervous system diseases. Therefore, it is urgent to establish a simple and accurate method for DA analysis. In this study, an economic and accurate DA ratiometric sensor was established using dual-emission carbon dots (DE-CDs). DE-CDs were first synthesized by the one-step solvothermal method and two separate fluorescence emission peaks at 340 and 500 nm were observed under the excitation of 310 nm. In the presence of Hg, the fluorescence signal at 340 nm was significantly quenched, while the signal at 500 nm keeps stable. Upon adding DA, the quenched signal at 340 nm was significantly recovered, whereas the signal at 500 nm remains stable. Therefore, a novel ratiometric sensor for DA analysis was established. This method shows a good linear range from 500 nM to 100 μM, and the detection limit was calculated to be 80 nM. Moreover, this established method shows excellent specificity and could be applied in real sample analysis, showing great potential for application in clinical research.

摘要

多巴胺(DA)是一种神经调节分子,在许多生物过程中发挥着关键作用。DA 系统的功能障碍与几种神经系统疾病密切相关。因此,建立一种简单、准确的 DA 分析方法迫在眉睫。在这项研究中,我们使用双发射碳点(DE-CDs)建立了一种经济且准确的 DA 比率传感器。首先通过一步溶剂热法合成了 DE-CDs,在 310nm 激发下观察到 340nm 和 500nm 处的两个独立荧光发射峰。在存在 Hg 的情况下,340nm 处的荧光信号显著猝灭,而 500nm 处的信号保持稳定。加入 DA 后,340nm 处猝灭的信号显著恢复,而 500nm 处的信号保持稳定。因此,建立了一种用于 DA 分析的新型比率传感器。该方法在 500nM 至 100μM 范围内具有良好的线性范围,检测限计算为 80nM。此外,该方法表现出优异的特异性,可应用于实际样品分析,在临床研究中有很大的应用潜力。

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