适体场效应晶体管在复杂环境中小分子传感中的应用。

Aptamer-Field-Effect Transistors for Small-Molecule Sensing in Complex Environments.

机构信息

Laboratory of Biosensors and Bioelectronics, Institute for Biomedical Engineering, Zürich, Switzerland.

出版信息

Methods Mol Biol. 2023;2570:187-196. doi: 10.1007/978-1-0716-2695-5_14.

Abstract

Aptamer-functionalized field-effect transistor (FET) biosensors enable detection of small-molecule targets in complex environments such as tissue and blood. Conventional FET-based platforms suffer from Debye screening in high ionic strength physiological environments where the effective sensing distance is limited to less than a nanometer from the surface of the sensor. Aptamers that undergo significant conformational rearrangement of negatively charged backbones upon target recognition within or in close proximity to the Debye length, facilitate the transduction of electronic signals through the semiconducting channel. Herein, the fabrication of high-performance, ultrathin-film FETs and subsequent aptamer functionalization are described. Moreover, electronic sensing measurement protocols alongside calibration methods to minimize device-to-device variations are covered.

摘要

适配子功能化场效应晶体管 (FET) 生物传感器能够在组织和血液等复杂环境中检测小分子目标物。传统的基于 FET 的平台在高离子强度的生理环境中受到德拜屏蔽的影响,在这种环境中,有效感应距离限制在传感器表面以下不到一纳米。在德拜长度内或附近,当适配子识别到目标物时,其负电荷骨架会发生显著的构象重排,从而促进电子信号通过半导体通道的转导。本文介绍了高性能、超薄薄膜 FET 的制造以及随后的适配子功能化。此外,还介绍了电子传感测量协议以及校准方法,以最小化器件间的差异。

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