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通过分子印迹聚合物功能化纳米电极对单个活细胞中的多巴胺进行原位检测。

In situ detection of dopamine in single living cells by molecularly imprinted polymer-functionalized nanoelectrodes.

机构信息

Hubei Key Laboratory for Precision Synthesis of Small Molecule Pharmaceuticals & Ministry of Education Key Laboratory for the Synthesis and Application of Organic Functional Molecules & College of Chemistry and Chemical Engineering, Hubei University, Wuhan, 430062, PR China.

Hubei Ecological Environmental Monitoring Center Station, Wuhan, 430000, PR China.

出版信息

Biosens Bioelectron. 2024 Aug 1;257:116332. doi: 10.1016/j.bios.2024.116332. Epub 2024 Apr 23.

Abstract

In situ detection of dopamine (DA) at single-cell level is critical for exploring neurotransmitter-related biological processes and diseases. However, the low content of DA and a variety of distractors with similar oxidation potentials as DA in cells brought great challenges. Here, a sensitive and specific electrochemical nanosensor was proposed for in situ detection of DA in single living cells based on nanodiamond (ND) and molecularly imprinted polymer (MIP)-functionalized carbon fiber nanoelectrode (ND/MIP/CFNE). Due to its excellent electrocatalytic property, ND was modified to the surface of CFNE based on amide bonding. Compared with bare CFNE, ND-modified CFNE can enhance oxidation currents of DA by about 4-fold, improving signal-to-noise ratio and detection sensitivity. MIP was further electropolymerized on the surface of nanoelectrodes to achieve specific capture and recognition of DA, which could avoid the interference of complex matrix and analogs in cells. Taking advantage of the precise positioning capability of a single-cell analyzer and micromanipulator, ND/MIP/CFNE could be precisely inserted into different locations of single cells and monitor oxidation signal of DA. The concentration of DA in the cytoplasm of single pheochromocytoma (PC12) cell was measured to be about 0.4 μM, providing a sensitive and powerful method for single-cell detection. Furthermore, the nanoelectrodes can monitor the fluctuation of intracellular DA under drug stimulation, providing new ideas and methods for new drug development and efficacy evaluation.

摘要

在单细胞水平上原位检测多巴胺(DA)对于探索神经递质相关的生物过程和疾病至关重要。然而,细胞内 DA 的含量低,并且存在许多与 DA 具有相似氧化电势的干扰物,这给检测带来了巨大的挑战。在此,基于纳米金刚石(ND)和分子印迹聚合物(MIP)功能化碳纤维纳米电极(ND/MIP/CFNE),我们提出了一种用于在单细胞中原位检测 DA 的灵敏和特异的电化学纳米传感器。由于其优异的电催化性能,ND 通过酰胺键修饰到 CFNE 的表面。与裸 CFNE 相比,ND 修饰的 CFNE 可以将 DA 的氧化电流提高约 4 倍,从而提高信噪比和检测灵敏度。然后,进一步在纳米电极表面电聚合 MIP,以实现对 DA 的特异性捕获和识别,从而可以避免细胞内复杂基质和类似物的干扰。利用单细胞分析仪和微操纵器的精确定位能力,ND/MIP/CFNE 可以精确插入到单个细胞的不同位置,并监测 DA 的氧化信号。测量到单个嗜铬细胞瘤(PC12)细胞细胞质中 DA 的浓度约为 0.4 μM,为单细胞检测提供了一种灵敏而强大的方法。此外,该纳米电极还可以监测药物刺激下细胞内 DA 的波动,为新药开发和疗效评估提供了新的思路和方法。

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