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通过电化学近场检测的直接读出对皮摩尔蛋白水平进行定量分析。

Quantitation of femtomolar protein levels via direct readout with the electrochemical proximity assay.

机构信息

Department of Chemistry and Biochemistry, Auburn University, Auburn, Alabama 36849, USA.

出版信息

J Am Chem Soc. 2012 Apr 25;134(16):7066-72. doi: 10.1021/ja3000485. Epub 2012 Apr 10.

Abstract

We have developed a separation-free, electrochemical assay format with direct readout that is amenable to highly sensitive and selective quantitation of a wide variety of target proteins. Our first generation of the electrochemical proximity assay (ECPA) is composed of two thrombin aptamers which form a cooperative complex only in the presence of target molecules, moving a methylene blue (MB)-conjugated oligonucleotide close to a gold electrode. Without washing steps, electrical current is increased in proportion to the concentration of a specific target protein. By employing a DNA-based experimental model with the aptamer system, we show that addition of a short DNA competitor can reduce background current of the MB peak to baseline levels. As such, the detection limit of aptamer-based ECPA for human thrombin was 50 pM via direct readout. The dual-probe nature of ECPA gave high selectivity and 93% recovery of signal from 2.5 nM thrombin in 2% bovine serum albumin (BSA). To greatly improve the flexibility of ECPA, we then proved the system functional with antibody-oligonucleotide conjugates as probes; the insulin detection limit was 128 fM with a dynamic range of over 4 orders of magnitude in concentration, again with high assay selectivity. ECPA thus allows separation-free, highly sensitive, and highly selective protein detection with a direct electrochemical readout. This method is extremely flexible, capable of detecting a wide variety of protein targets, and is amenable to point-of-care protein measurement, since any target with two aptamers or antibodies could be assayed via direct electrochemical readout.

摘要

我们开发了一种无需分离、具有直接读数功能的电化学分析方法,适用于对各种目标蛋白进行高灵敏度和高选择性定量分析。我们第一代电化学邻近分析(ECPA)由两个凝血酶适体组成,只有在存在目标分子的情况下才会形成协同复合物,将亚甲基蓝(MB)缀合的寡核苷酸移动到金电极附近。无需洗涤步骤,电流会与特定目标蛋白的浓度成正比增加。通过使用带有适体系统的基于 DNA 的实验模型,我们表明,添加短的 DNA 竞争物可以将 MB 峰的背景电流降低到基线水平。因此,通过直接读数,基于适体的 ECPA 对人凝血酶的检测限为 50 pM。ECPA 的双探针特性具有高选择性,在 2%牛血清白蛋白(BSA)中,2.5 nM 凝血酶的信号回收率为 93%。为了极大地提高 ECPA 的灵活性,我们随后证明了该系统可以与抗体-寡核苷酸缀合物作为探针一起使用;胰岛素的检测限为 128 fM,浓度范围超过 4 个数量级,具有很高的分析选择性。因此,ECPA 允许无需分离、高灵敏度和高选择性的蛋白质检测,并具有直接电化学读数功能。该方法非常灵活,能够检测各种蛋白质靶标,并且适用于即时检测蛋白质,因为任何具有两个适体或抗体的靶标都可以通过直接电化学读数进行检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/929b/4992576/af94a44c44b7/nihms808758f1.jpg

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