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适体传感器中单分子动力学指纹图谱用于小分子的超灵敏检测。

Single-Molecule Kinetic Fingerprinting for the Ultrasensitive Detection of Small Molecules with Aptasensors.

机构信息

Key Laboratory of Agro-food Safety and Quality of Ministry of Agriculture and Rural Affairs, Institute of Quality Standards and Testing Technology for Agro-Products , Chinese Academy of Agricultural Sciences , Beijing 100081 , China.

Beijing Key Laboratory of Bioprocess, College of Life Science and Technology , Beijing University of Chemical Technology , Beijing 100029 , China.

出版信息

Anal Chem. 2019 Jan 15;91(2):1424-1431. doi: 10.1021/acs.analchem.8b04145. Epub 2019 Jan 2.

Abstract

Aptamers have emerged as promising molecular tools for small-molecule analyte sensing. However, the performance of such aptasensors is generally limited by leakage since it has been difficult to completely suppress signal in the absence of analyte, resulting in a compromise between sensitivity and specificity. Here, we describe a methodology for the ultrasensitive detection of analytes combining aptasensors with single-molecule kinetic fingerprinting. A short, fluorescently labeled DNA probe is utilized to detect the structural changes upon ligand binding to the designed hairpin-shaped aptasensor probe. The Poisson statistics of binding and dissociation events of the DNA probe to single surface-immobilized aptasensor molecules is monitored by total internal reflection fluorescence microscopy, permitting the high-accuracy discrimination of the ligand bound and ligand-free states, resulting in zero background. The programmable dynamics of the hairpin enables fine-tuning of the hybridization kinetics of the fluorescent probe, rendering the acquisition time sufficiently flexible to optimize discrimination. Remarkable detection limits are achieved for a diverse set of analytes when spiked into chicken meat extract: the nucleotide adenosine (0.3 pM), the insecticide acetamiprid (0.35 pM), and the dioxin-like toxin PCB-77 (0.72 pM), which is superior to recently reported aptasensors. Our generalizable method significantly improves the performance of aptasensors, with the potential to extend to other molecular biomarkers.

摘要

适体作为小分子分析物传感的有前途的分子工具已经出现。然而,由于难以在没有分析物的情况下完全抑制信号,这种适体传感器的性能通常受到泄漏的限制,从而导致灵敏度和特异性之间的折衷。在这里,我们描述了一种将适体传感器与单分子动力学指纹图谱相结合的超灵敏分析物检测方法。利用短的荧光标记 DNA 探针来检测配体与设计的发夹形适体传感器探针结合时的结构变化。通过全内反射荧光显微镜监测 DNA 探针与单个表面固定的适体传感器分子的结合和解离事件的泊松统计,能够高精度地区分配体结合和配体自由状态,从而实现零背景。发夹的可编程动力学使荧光探针的杂交动力学能够进行微调,从而使采集时间足够灵活以优化区分。当将多种分析物掺入鸡肉提取物中时,该方法实现了对一系列分析物的显著检测限:核苷酸腺苷(0.3 pM)、杀虫剂乙酰甲胺磷(0.35 pM)和类似二恶英的毒素 PCB-77(0.72 pM),优于最近报道的适体传感器。我们的可推广方法显著提高了适体传感器的性能,具有扩展到其他分子生物标志物的潜力。

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