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Tuning Surface Charge and Morphology for the Efficient Detection of Dopamine under the Interferences of Uric Acid, Ascorbic Acid, and Protein Adsorption

机译:调节表面电荷和形态,以在尿酸,抗坏血酸和蛋白质吸附的干扰下有效检测多巴胺

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In this research, we aimed to evaluate the impact of the surface charges and morphologies of electrodes on electrochemically detecting dopamine (DA) in the presence of protein adsorption, uric acid (UA), and ascorbic acid (AA). Through the electropolymerization of functionalized 3,4-ethylenedioxythiophenes (EDOT) directly on Au electrodes, we successfully created PEDOT-coated electrodes with three different functional groups and nanostructures. Negatively charged carboxylic acid groups attracted DA while reducing the interferences of UA and AA. due to electrostatic effect. We used charge-free tetra(ethylene glycol) and zwitterionic phosphocholine groups are used to evaluate the interference of protein adsorption on DA sensing because they both can effectively prevent the nonspecific adsorption of proteins. These two electrodes can avoid protein adsorption, yet proved ineffective for DA sensing: both tetra(ethylene glycol) and the phosphocholine groups are electroneutral and have minimal electrostatic interactions with DA. We also used three proteins of different isoelectric points - bovine serum albumin, lysozyme, and fibrinogen - to evaluate the influence of protein adsorption on DA detection. We found that for an electrode coated with carboxylic acid-functionalized PEDOT, the adsorption of positively charged lysozyme can promote the detection sensitivity of AA and UA, and that all protein adsorption lowers the sensitivity of DA In contrast, nanostructures promote the detection sensitivity of all three molecules. All of our tested functionalized PEDOTcoated electrodes demonstrated good stability and functionality in buffers.
机译:在这项研究中,我们旨在评估在蛋白质吸附,尿酸(UA)和抗坏血酸(AA)存在的情况下,电极的表面电荷和电极形态对电化学检测多巴胺(DA)的影响。通过直接在Au电极上进行功能化3,4-乙二氧基噻吩(EDOT)的电聚合,我们成功创建了具有三种不同官能团和纳米结构的PEDOT涂层电极。带负电荷的羧酸基团吸引了DA,同时降低了UA和AA的干扰。由于静电作用。我们使用无电荷的四(乙二醇)和两性离子磷酸胆碱基团来评估蛋白质吸附对DA传感的干扰,因为它们都可以有效防止蛋白质的非特异性吸附。这两个电极可避免蛋白质吸附,但已证明对DA感测无效:四(乙二醇)和磷酸胆碱基团均为电子中性,与DA的静电相互作用最小。我们还使用了三种等电点不同的蛋白质-牛血清白蛋白,溶菌酶和纤维蛋白原-来评估蛋白质吸附对DA检测的影响。我们发现,对于涂有羧酸功能化PEDOT的电极,带正电的溶菌酶的吸附可提高AA和UA的检测灵敏度,而所有蛋白质吸附均会降低DA的检测灵敏度。相反,纳米结构可促进所有氨基酸的检测灵敏度。三个分子。我们所有经过测试的功能化PEDOT涂层电极在缓冲液中均表现出良好的稳定性和功能性。

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