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基于新型有机电解质-绝缘体-半导体的无标记 DNA 检测

Label-free detection of DNA using novel organic-based electrolyte-insulator-semiconductor.

机构信息

Research Center for Applied Sciences, Academia Sinica, Nankang, Taipei, Taiwan.

出版信息

Biosens Bioelectron. 2010 Aug 15;25(12):2706-10. doi: 10.1016/j.bios.2010.04.041. Epub 2010 May 4.

DOI:10.1016/j.bios.2010.04.041
PMID:20483584
Abstract

In this study, we have constructed the first organic field effect sensor based on an electrolyte-insulator-semiconductor structure (OEIS) and applied this novel device to pH and DNA sensing. Variations in the insulator-electrolyte surface potential, which originate from either the change of the ionization states of the insulator surface groups or the binding of charged molecules to the insulator surface, modify the flat band voltage (V(FB)) of the OEIS sensor. The pH sensing experiments of OEIS sensor showed that the output signal linearly depended on pH solution in the range from pH 2 to pH 12, and an average sensitivity of 44.1 mV/pH was obtained. In the biosensing experiments, the absorption of positively charged poly-L-lysine on the insulator surface resulted in the reduction of the V(FB) value, whereas the subsequent binding of negatively charged single-stranded DNA probe (ssDNA) via electrostatic interaction increased the V(FB) value. Furthermore, the ssDNA-immobilized OEIS device was successfully used for the detection of DNA hybridization. The detection limit of complementary DNA was as low as 1 microM, and the output signal of OEIS biosensor linearly increased with the logarithm of complementary DNA concentration in the range from 5x10(-5) to 10(-7) M. The easy and inexpensive fabrication of the OEIS device allows to be served as a potentially disposable and sensitive biosensor.

摘要

在这项研究中,我们构建了第一个基于电解质-绝缘体-半导体结构(OEIS)的有机场效应传感器,并将该新型器件应用于 pH 值和 DNA 传感。绝缘体-电解质表面势的变化,源于绝缘体表面基团的电离态变化或带电分子与绝缘体表面的结合,会改变 OEIS 传感器的平带电压(V(FB))。OEIS 传感器的 pH 值传感实验表明,输出信号在 pH 2 到 pH 12 的范围内线性依赖于 pH 溶液,平均灵敏度为 44.1 mV/pH。在生物传感实验中,带正电荷的聚-L-赖氨酸在绝缘体表面的吸附导致 V(FB)值降低,而随后通过静电相互作用结合带负电荷的单链 DNA 探针(ssDNA)会增加 V(FB)值。此外,ssDNA 固定化的 OEIS 器件成功用于 DNA 杂交检测。互补 DNA 的检测限低至 1 microM,OEIS 生物传感器的输出信号与互补 DNA 浓度的对数在 5x10(-5) 到 10(-7) M 的范围内呈线性增加。OEIS 器件易于制造且成本低廉,可作为一种潜在的一次性和灵敏的生物传感器。

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