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基于灵敏的 N-(氨丁基)-N-乙基异鲁米诺功能化金纳米探针的新型用于蛋白质的电化学发光适体传感器。

A novel electrochemiluminescence aptasensor for protein based on a sensitive N-(aminobutyl)-N-ethylisoluminol-functionalized gold nanoprobe.

机构信息

CAS Key Laboratory of Soft Matter Chemistry, Department of Chemistry, University of Science & Technology of China, Hefei, Anhui 230026, People's Republic of China.

出版信息

Analyst. 2011 Aug 21;136(16):3244-51. doi: 10.1039/c1an15298j. Epub 2011 Jun 9.

Abstract

A novel electrochemiluminescence (ECL) aptasensor for platelet-derived growth factor B chain (PDGF-BB) assay was developed by assembling N-(aminobutyl)-N-ethylisoluminol functionalized gold nanoparticles (ABEI-AuNPs) with aptamers as nanoprobes. In the protocol, the biotinylated aptamer capture probes were first immobilized on a streptavidin coated gold nanoparticle (AuNPs) modified electrode, afterwards, the target PDGF-BB and the ABEI-AuNPs tagged aptamer signal probe were successively attached to the modified electrode by virtue of the dimer structure of PDGF-BB to fabricate a "sandwich" conjugate modified electrode, i.e. an aptasensor. ECL measurement was carried out with a double-step potential in carbonate buffer solution containing H(2)O(2). The aptasensor showed high sensitivity and selectivity toward PDGF-BB and specificity toward PDGF-BB aptamer. The detection limit was as low as 2.7 × 10(-14) M. In this work, the ABEI-AuNPs synthesized by a simple seed growth method have been successfully used as aptamer labels, which greatly amplified the ECL signal by binding numbers of ABEI molecules on the surface of AuNPs. The ABEI-AuNPs signal amplification is superior to other reported signal amplification strategies based on aptamer-related polymerase chain reaction or functionalized nanoparticles in simplicity, stability, labeling property and practical applicability. And the ABEI-AuNPs based nanoprobe is more sensitive than the luminol functionalized AuNPs based nanoprobe. Moreover, such an ultra-sensitive and low-cost assay can be accomplished with a simple and fast procedure by using a simple ECL instrumentation. The aptasensor was also applied for the detection of PDGF-BB in human serum samples, showing great application potential. Given these advantages, the ECL aptasensor is well suited for the direct, sensitive and rapid detection of protein in complex clinical samples.

摘要

一种新型的电化学发光(ECL)适体传感器,用于血小板衍生生长因子 B 链(PDGF-BB)的测定,是通过将 N-(氨丁基)-N-乙基异鲁米诺功能化的金纳米粒子(ABEI-AuNPs)与适体组装作为纳米探针来构建的。在该方案中,首先将生物素化的适体捕获探针固定在链霉亲和素涂覆的金纳米粒子(AuNPs)修饰电极上,随后,目标 PDGF-BB 和 ABEI-AuNPs 标记的适体信号探针通过 PDGF-BB 的二聚体结构先后附着在修饰电极上,从而构建了“三明治”式的缀合物修饰电极,即适体传感器。在含有 H(2)O(2)的碳酸盐缓冲溶液中,采用双步电势进行 ECL 测量。该适体传感器对 PDGF-BB 具有高灵敏度和选择性,对 PDGF-BB 适体具有特异性。检测限低至 2.7 × 10(-14) M。在这项工作中,通过简单的种子生长方法合成的 ABEI-AuNPs 已成功用作适体标记物,通过结合 AuNPs 表面上的 ABEI 分子数量,大大放大了 ECL 信号。与基于适体相关的聚合酶链反应或功能化纳米粒子的其他报道的信号放大策略相比,ABEI-AuNPs 的信号放大在简单性、稳定性、标记特性和实际适用性方面具有优势。并且,ABEI-AuNPs 基纳米探针比鲁米诺功能化的 AuNPs 基纳米探针更灵敏。此外,通过使用简单的 ECL 仪器,通过简单、快速的程序可以完成这种超灵敏和低成本的测定。该适体传感器还用于检测人血清样品中的 PDGF-BB,显示出巨大的应用潜力。鉴于这些优势,ECL 适体传感器非常适合用于复杂临床样品中蛋白质的直接、灵敏和快速检测。

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