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基于特定目标结合诱导滚环扩增的电化学适体识别系统用于灵敏的蛋白质分析。

Electrochemical aptameric recognition system for a sensitive protein assay based on specific target binding-induced rolling circle amplification.

机构信息

State Key Laboratory for Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University, Changsha, 410082, P. R. China.

出版信息

Anal Chem. 2010 Mar 15;82(6):2282-9. doi: 10.1021/ac902400n.

Abstract

A reusable aptameric recognition system was described for the electrochemical detection of the protein PDGF-BB based on the target binding-induced rolling circle amplification (RCA). A complementary DNA (CDNA), linear padlock probe, and primer probe were utilized to introduce a RCA process into the aptamer-target binding event while a new aptamer was elegantly designed via lengthening the original aptamer by the complement to the CDNA. The aptameric sensing system facilitates the integration of multiple functional elements into a signaling scheme: a unique electrochemical technique, an attractive RCA process, reversible DNA hybridization, and desirable aptameric target recognition. This RCA-based electrochemical recognition system not only exhibits excellent performance (e.g., a detection limit of 6.3 x 10(-11) M, a linear dynamic range of 2 orders of magnitude, high specificity, and satisfactory repeatability) but also overcomes the limitations associated with conventional aptameric biosensors (e.g., dependence of signaling target binding on specific aptamer sequence or requirement of sandwich assays for two or more binding sites per target molecule). A recovery test demonstrated the feasibility of the developed target protein assay. Given the attractive characteristics, this aptameric recognition platform is expected to be a candidate for the detection of proteins and other ligands of interest in both fundamental and applied research.

摘要

一种基于目标结合诱导滚环扩增(RCA)的电化学检测蛋白 PDGF-BB 的可重复使用的适体识别系统被描述。利用互补 DNA(cDNA)、线性发夹探针和引物探针将 RCA 过程引入适体-靶标结合事件中,同时通过 cDNA 的互补来巧妙地设计新的适体。适体传感系统将多个功能元件集成到信号方案中:独特的电化学技术、有吸引力的 RCA 过程、可逆 DNA 杂交和理想的适体靶标识别。这种基于 RCA 的电化学生物识别系统不仅表现出优异的性能(例如,检测限为 6.3 x 10(-11) M,线性动态范围为 2 个数量级,高特异性和令人满意的重复性),而且克服了传统适体生物传感器的局限性(例如,信号目标结合对特定适体序列的依赖性或每个靶分子需要两个或更多结合位点的三明治测定)。回收测试证明了所开发的目标蛋白测定的可行性。鉴于其吸引人的特点,这种适体识别平台有望成为基础研究和应用研究中检测蛋白质和其他感兴趣配体的候选者。

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