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基于碳纳米管场效应晶体管的用于非标记实时检测人免疫球蛋白E的适体生物传感器。

Apta-biosensors for nonlabeled real time detection of human IgE based on carbon nanotube field effect transistors.

作者信息

Kim Jun Pyo, Hong Seunghun, Sim Sang Jun

机构信息

Department of Chemical Engineering, Sungkyunkwan University, Suwon 440-746, South Korea.

出版信息

J Nanosci Nanotechnol. 2011 May;11(5):4182-7. doi: 10.1166/jnn.2011.3692.

Abstract

In this study, we demonstrated the aptamer-based biosensor (apta-biosensor) using CNT-FET devices for label free detection of allergy diagnosis by IgE detection. In order to detect the IgE, two kinds of receptor (monoclonal IgE antibody and anti-IgE aptamer)-modified CNT-FET devices were fabricated. The binding event of the target IgE onto receptors was detected by monitoring the gating effect caused by the charges of the target proteins. Since the CNT-FET biosensors were used in buffer solution, it was crucial to use small-size receptors like aptamers than whole antibodies so that the charged target IgE could approach the CNT surface within the Debye length distance to give a large gating effect. The results show that CNT-FET biosensors using monoclonal IgE antibody had very low sensitivity (minimum detectable level 1000 ng/mL), while those based on anti-IgE aptamer could detect 50 ng/mL. Moreover, the aptamer-modified CNT-FET herein could successfully block non-target proteins and could selectively detect the target protein in an environment similar to human serum electrolyte. Therefore, aptamer-based CNT-FET devices enable the production of label-free ultrasensitive electronic biosensors to detect clinically important biomarkers for disease diagnosis.

摘要

在本研究中,我们展示了基于适配体的生物传感器(适配体生物传感器),该传感器使用碳纳米管场效应晶体管(CNT-FET)器件,通过检测免疫球蛋白E(IgE)来实现无标记的过敏诊断检测。为了检测IgE,我们制备了两种分别用受体(单克隆IgE抗体和抗IgE适配体)修饰的CNT-FET器件。通过监测目标蛋白电荷引起的门控效应来检测目标IgE与受体的结合事件。由于CNT-FET生物传感器是在缓冲溶液中使用,因此使用像适配体这样的小尺寸受体比使用完整抗体更为关键,这样带电的目标IgE能够在德拜长度距离内接近碳纳米管表面,从而产生较大的门控效应。结果表明,使用单克隆IgE抗体的CNT-FET生物传感器灵敏度非常低(最低检测水平为1000 ng/mL),而基于抗IgE适配体的传感器能够检测到50 ng/mL。此外,本文中适配体修饰的CNT-FET能够成功阻断非目标蛋白,并能在类似于人体血清电解质的环境中选择性地检测目标蛋白。因此,基于适配体的CNT-FET器件能够生产出用于检测疾病诊断中临床重要生物标志物的无标记超灵敏电子生物传感器。

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