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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Quantitative electrochemiluminescence detection of proteins: Avidin-based sensor and tris(2,2 '-bipyridine) ruthenium(II) label
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Quantitative electrochemiluminescence detection of proteins: Avidin-based sensor and tris(2,2 '-bipyridine) ruthenium(II) label

机译:蛋白质的定量电化学发光检测:基于抗生物素蛋白的传感器和三(2,2'-联吡啶)钌(II)标签

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Quantitative electrochemilumineseence (ECL) detection of a model protein, bovine serum albumin (BSA) was achieved via biotin-avidin interaction using an avidin-based sensor and a well-developed ECL system of tris(2,2'-bipyridine) ruthenium(II) derivative as label and tri-n-propylamine (TPA) as coreactant. To detect the protein, avidin was linked to the glassy carbon electrode through passive adsorptions and covalent interaction with carboxylate-terminated carbon nanotubes that was used as binder to immobilize avidin onto the electrode. Then, biotinylated BSA tagged with tris(2,2'-bipyridine) ruthenium(II) label was attached to the prepared avidin surface. After binding of BSA labeled with tris(2,2'-bipyridine) ruthenium(II) derivative to the surface-immobilized avidin through biotin, ECL response was generated when the self-assembled modified electrode was immersed in a TPA-containing electrolyte solution. Such double protein labeling protocol with a biotin label for biorecognition and ruthenium label for ECL detection facilitated the detection of protein compared to the classical double antibody sandwich format. The ECL intensity was linearly proportional to the feed concentration of BSA over two orders of magnitude in the range of 15 nM to 7.5 mu M. The detection limit was estimated to be 1.5 nM. Further application to the lysozyme analysis was carried out to validate the present approach for an effective and favorable protocol for the quantitative detection of proteins. The dynamic range of lysozyme was from 0.001 g L-1 to 0.1 g L-1 and the detection limit was 0.1 mg L-1. Electrochemical impedance and cyclic voltammetric measurements along with some necessary control experiments were conducted to characterize the successful formation of self-assembled modified electrodes and to grant the whole detection process. (c) 2008 Elsevier B.V. All rights reserved.
机译:使用基于抗生物素蛋白的传感器和发达的三(2,2'-联吡啶)钌(II)ECL系统通过生物素-亲和素相互作用实现对模型蛋白,牛血清白蛋白(BSA)的定量电化学发光(ECL)检测)衍生物作为标记,三正丙胺(TPA)作为共反应剂。为了检测蛋白质,抗生物素蛋白通过被动吸附和与羧酸盐封端的碳纳米管的共价相互作用与玻碳电极相连,碳纳米管用作粘合剂将抗生物素蛋白固定在电极上。然后,将用三(2,2'-联吡啶)钌(II)标签标记的生物素化BSA附着到制备的抗生物素蛋白表面。通过生物素将标记有三(2,2'-联吡啶)钌(II)衍生物的BSA与表面固定的抗生物素蛋白结合后,将自组装修饰电极浸入含TPA的电解液中时会产生ECL响应。与经典的双抗体夹心形式相比,具有生物素标记物的生物识别和钌标记物的这种双重蛋白质标记方案可促进蛋白质的检测。 ECL强度与BSA进料浓度在15 nM至7.5μM范围内的两个数量级成线性比例关系。检测极限估计为1.5 nM。进行了进一步的溶菌酶分析,以验证本方法对蛋白质定量检测的有效和有利方案。溶菌酶的动态范围为0.001 g L-1至0.1 g L-1,检出限为0.1 mg L-1。进行了电化学阻抗和循环伏安法测量以及一些必要的控制实验,以表征自组装修饰电极的成功形成并为整个检测过程提供了条件。 (c)2008 Elsevier B.V.保留所有权利。

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