首页> 外文期刊>Analytical methods >A bimetallic PtPd hybrid nanostructure-amplified enzyme-free conductometric immunoassay for lipocalin-2 in renal cell carcinoma on an interdigitated micro-comb electrode
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A bimetallic PtPd hybrid nanostructure-amplified enzyme-free conductometric immunoassay for lipocalin-2 in renal cell carcinoma on an interdigitated micro-comb electrode

机译:一种双金属PTPD杂交纳米结构扩增的酶免疫酶,用于脂肪甘油蛋白-2在肾细胞癌上的肾脏细胞癌中的肾脏细胞癌中的肾脏细胞癌

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摘要

A new enzyme-free conductometric immunoassay based on bimetallic PtPd hybrid nanostructures was developed for the sensitive determination of lipocalin-2 in renal cell carcinoma. An immunosensor was prepared by immobilizing the capture antibody on an interdigitated micro-comb electrode, whereas bimetallic PtPd hybrid nanostructures were utilized for the conjugation of the detection antibody. Initially, a sandwich immunoreaction was carried out between the capture antibody and detection antibody in the presence of lipocalin-2 on the functional interdigitated micro-comb electrode. Thereafter, the immobilized PtPd bimetallic nanostructures could be used as enzymatic mimics to catalyze the reaction of hydrogen peroxide (H2O2) in 0.01 M phosphate buffer solution (pH 7.4) containing KI, thereby resulting in the local variation in the conductivity of the modified electrode. Several labeling strategies using Pt nanoparticles, Pd nanoparticles and bimetallic PtPd hybrid nanostructures were investigated for the detection of lipocalin-2, and improved analytical features were acquired with PtPd bimetallic nanostructures. With the PtPd labeling method, the factors influencing the analytical performance of the conductometric immunoassay were studied in detail. The strong attachment of biomolecules to the interdigitated micro-comb electrode and PtPd bimetallic nanostructures enabled a good repeatability and intermediate precision down to 10.4%. The dynamic concentration range spanned from 10 pg mL(-1) to 30 ng mL(-1) with a low detection limit of 5.9 pg mL(-1) lipocalin-2 under optimum conditions. The reliability of the conductometric immunoassay was verified for the detection of lipocalin-2 in 4 blood serum and 4 urine samples and matched well with that obtained from the commercial lipocalin-2 enzyme-linked immunosorbant assay kit.
机译:基于双金属PTPD杂交纳米结构的新型无酶传导免疫测定敏感测定肾细胞癌中的脂肪甘油蛋白-2的敏感性。通过将捕获抗体固定在交叉分枝的微梳子电极上制备免疫传感器,而双金属PTPD杂交纳米结构用于检测抗体的缀合。最初,在捕获抗体和检测抗体中在脂肪甘油蛋白-2上的磷脂蛋白-2上的检测抗体之间进行夹层免疫反应。此后,固定化的PTPD双金属纳米结构可用作酶促模拟物,以催化过氧化氢(H2O2)在含有Ki的0.01M磷酸盐缓冲溶液(pH7.4)中的反应,从而导致改性电极的导电性局部变化。研究了使用Pt纳米颗粒,Pd纳米颗粒和双金属PTPD杂交纳米结构的几种标记策略进行检测,检测脂素-2,并通过PTPD双金属纳米结构获得改善的分析特征。利用PTPD标记方法,详细研究了影响电导测定免疫测定的分析性能的因素。生物分子的强粘附到互指微梳电极和PTPD双金属纳米结构使得良好的重复性和中间精度降至10.4%。在最佳条件下,在最佳条件下,在10pg ml(-1)至30 ng ml(-1)的10 pg ml(-1)至30ng ml(-1)中截止。验证了电导测定免疫测定的可靠性用于检测4血清血清和4次尿液样品中的脂质素-2,并与从商业脂素-2酶连接的免疫吸附试剂盒中获得的良好匹配。

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