Abstract An electrochemical immunosensor for brain natriuretic peptide prepared with screen-printed carbon electrodes nanostructured with gold nanoparticles grafted through aryl diazonium salt chemistry
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An electrochemical immunosensor for brain natriuretic peptide prepared with screen-printed carbon electrodes nanostructured with gold nanoparticles grafted through aryl diazonium salt chemistry

机译:用丝网印刷碳电极用芳基重氮盐化学接枝的金纳米颗粒制备的脑印刷碳电极的脑钠致肽的电化学免疫传感器

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AbstractA sensitive amperometric immunosensor has been prepared by immobilization of capture antibodies onto gold nanoparticles (AuNPs) grafted on a screen-printed carbon electrode (SPCE) through aryl diazonium salt chemistry using 4-aminothiophenol (AuNPs-S-Phe-SPCE). The immunosensor was designed for the accurate determination of clinically relevant levels of B-type natriuretic peptide (BNP) in human serum samples. The nanostructured electrochemical platform resulted in an ordered layer of AuNPs onto SPCEs which combined the advantages of high conductivity and improved stability of immobilized biomolecules. The resulting disposable immunosensor used a sandwich type immunoassay involving a peroxidase-labeled detector antibody. The amperometric transduction was carried out at ?0.20V (vs the Ag pseudo-reference electrode) upon the addition of hydroquinone (HQ) as electron transfer mediator and H2O2as the enzyme substrate. The nanostructured immunosensors show a storage stability of at least 25 days, a linear range between 0.014 and 15ngmL?1, and a LOD of 4pgmL?1, which is 100 times lower than the established cut-off value for heart failure (HF) diagnosis. The performance of the immunosensor is advantageously compared with that provided with immunosensors prepared by grafting SPCE with p-phenylendiamine (H2N-Phe-SPCE) and attaching AuNPs by immersion into an AuNPs suspension or by electrochemical deposition, as well as with immunosensors constructed using commercial AuNPs-modified SPCEs. The developed immunosensor was applied to the successful analysis
机译:<![cdata [ 抽象 通过将捕获抗体固定到接枝在丝网印刷的碳电极(SPCE)上的金纳米颗粒(AUNP)上来制备敏感的安培测定敏感性免疫传感器使用4-氨基噻吩醇(AUNPS-S-PHE-SPCE)的芳基重氮盐化学。专为准确测定人血清样品中B型利钠肽(BNP)的临床相关水平的精确测定。纳米结构电化学平台导致有序的AUNP层上的SPCE,其结合了导电性高的优点,并改善了固定化生物分子的稳定性。所得一次性免疫传感器使用夹层型免疫测定涉及过氧化物酶标记的检测器抗体。在添加氢醌(HQ)作为电子转移介质和H 2 O 2 作为酶底物。纳米结构免疫传感器显示至少25天的储存稳定性,线性范围在0.014和15ngml α1,以及4pgml ?1 ,比心力衰竭(HF)诊断的建立截止值低100倍。有利地将免疫传感器的性能与提供通过用p-phenylendi金属嫁接(H 2> 2 N-PHE-SPCE)和附着AUNP来制备的免疫传感器的性能浸入AUNPS悬浮液或通过电化学沉积,以及使用商业AUNPS改性SPCE构建的免疫传感器。开发的免疫传感器应用于成功分析

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