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首页> 外文期刊>Analytical chemistry >Immunoelectrodes in Protein Detection: Comparison between Glassy Carbon and a Semimetallic Ni/P Thin Film as Binding Support. Biological Applications
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Immunoelectrodes in Protein Detection: Comparison between Glassy Carbon and a Semimetallic Ni/P Thin Film as Binding Support. Biological Applications

机译:蛋白质检测中的免疫电极:玻璃碳和半金属Ni / P薄膜作为结合载体的比较。生物应用

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Though immunoelectrodes can allow direct detection of very low protein amounts (about 0.1 pmol) in vitro and in vivo, they are not yet widely used because they need quality improvement Based on a few works devoted to the basic electrochemical phenomenon occurring when antibobies are linked onto a solid support and during antigen/antibody complex formation, we have coated two different supports with antibodies: the classical glassy carbon fiber or an epoxy plate covered with an amorphous semimetallic (nickel/phosphorus) thin film obtained by means of an electrochemical deposit The antibody/ antigen complex formation induces direct and/or indirect ionic movements and a current flow through the conductive support toward a very low-noise and high-sensitivity preamplifier stage in an I/V configuration. The proposed electrochemical treatment (hydrophilization), applied to both carbon and Ni/P electrodes, improves antibody binding and reliability of the response to antigens. The Ni/P probes present several advantages when compared to carbon fiber: better conductivity, possibility of surface quality control, and semimetallic nature, making them unbreakable. Several applications were proposed: so-matostatin-14 detection with both carbon fiber and Ni/P plate electrodes, and histamine detection in simple and complex fluid media. Dose-response curves and analysis of the results lead us to conclude that the obtained currents are directly related to the quantity of antigen.
机译:尽管免疫电极可以在体外和体内直接检测极低的蛋白质量(约0.1 pmol),但由于需要改进质量,因此尚未得到广泛使用。基于致力于将抗体连接到抗体上的基本电化学现象的一些工作固体支持物并在抗原/抗体复合物形成过程中,我们用抗体包被了两种不同的支持物:经典的玻璃碳纤维或覆盖有通过电化学沉积获得的非晶态半金属(镍/磷)薄膜的环氧板抗原复合物的形成引起直接和/或间接的离子运动,电流流过导电载体,以I / V构造流向噪声极低且灵敏度高的前置放大器级。拟议的电化学处理(亲水化)应用于碳电极和Ni / P电极,可提高抗体结合力和对抗原反应的可靠性。与碳纤维相比,Ni / P探针具有几个优点:更好的导电性,表面质量控制的可能性以及半金属性质,使其坚不可摧。提出了几种应用:用碳纤维和Ni / P板电极同时检测生长抑素14,以及在简单和复杂的流体介质中检测组胺。剂量反应曲线和结果分析使我们得出结论,所获得的电流与抗原的数量直接相关。

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