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通过嵌入二维材料的金属纳米粒子对神经递质乙酰胆碱进行伏安法测量。

Voltammetric measurements of neurotransmitter-acetylcholine through metallic nanoparticles embedded 2-D material.

机构信息

Inter-University Accelerator Centre, Aruna Asaf Ali Marg, New Delhi 110067, India.

Amity Institute of Nanotechnology, Amity University, Noida 201303, Uttar Pradesh, India.

出版信息

Int J Biol Macromol. 2019 Nov 1;140:415-422. doi: 10.1016/j.ijbiomac.2019.08.102. Epub 2019 Aug 14.

DOI:10.1016/j.ijbiomac.2019.08.102
PMID:31421177
Abstract

The most generally spread neurotransmitter acetylcholine (Ach) is used as a chemical messenger assisting in conveying signals transversely through the nerve synapse. Herein, two enzymes acetylcholinesterase and choline oxidase were covalently immobilized over the gold nanoparticles (Au) embedded graphene oxide (GO; 2D carbon material) nanocomposite modified ITO coated glass plate. The synergetic and unique properties of Au and GO present in nanocomposite are used to detect the ultra-small concentration of analyte, Ach. The prepared nanocomposites were characterized using different techniques i.e. TEM, XRD, SEM, FTIR, UV-Vis and Raman Spectroscopy. All the electrochemical measurements were performed using 3 electrodes integrated electrochemical system by introducing Ach through varying its concentration from 100 pM to 1000 nM. Cyclic voltammetry curves for different concentrations of Ach indicate the facile charge transfer process over the working electrode. Square wave voltammetry curves indicate the good sensing measurements of the modified electrode at the fixed potential. The limit of detection was found to be as low as 100 pM. In addition to these, selectivity of the electrode towards Ach molecule was confirmed by measuring the response towards other interfering agents. Besides this, the present nano interface is capable of detecting Ach in biological fluid such as serum.

摘要

最广泛分布的神经递质乙酰胆碱 (Ach) 被用作化学信使,协助在神经突触中横向传递信号。在此,两种酶乙酰胆碱酯酶和胆碱氧化酶通过嵌入氧化石墨烯 (GO; 二维碳材料) 纳米复合材料上的金纳米粒子 (Au) 共价固定。纳米复合材料中存在的 Au 和 GO 的协同和独特性质用于检测分析物 Ach 的超小浓度。使用不同的技术,即 TEM、XRD、SEM、FTIR、UV-Vis 和拉曼光谱对制备的纳米复合材料进行了表征。通过将 Ach 的浓度从 100 pM 变化到 1000 nM,使用集成了 3 个电极的电化学系统进行了所有电化学测量。不同浓度 Ach 的循环伏安曲线表明工作电极上易于进行电荷转移过程。方波伏安曲线表明固定电位下修饰电极具有良好的传感测量性能。检测限低至 100 pM。除此之外,通过测量对其他干扰剂的响应,还确认了电极对 Ach 分子的选择性。除此之外,这种纳米界面能够检测生物液(如血清)中的 Ach。

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