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使用高超声速谐振器去除生物污垢和检测蛋白质。

Biofouling Removal and Protein Detection Using a Hypersonic Resonator.

作者信息

Pan Shuting, Zhang Hongxiang, Liu Wenpeng, Wang Yanyan, Pang Wei, Duan Xuexin

机构信息

State Key Laboratory of Precision Measuring Technology & Instruments and ‡College of Precision Instrument and Opto-electronics Engineering, Tianjin University , Tianjin 300072, China.

出版信息

ACS Sens. 2017 Aug 25;2(8):1175-1183. doi: 10.1021/acssensors.7b00298. Epub 2017 Jul 28.

Abstract

Nonspecific binding (NSB) is a general issue for surface based biosensors. Various approaches have been developed to prevent or remove the NSBs. However, these approaches either increased the background signals of the sensors or limited to specific transducers interface. In this work, we developed a hydrodynamic approach to selectively remove the NSBs using a microfabricated hypersonic resonator with 2.5 gigahertz (GHz) resonant frequency. The high frequency device facilitates generation of multiple controlled microvortexes which then create cleaning forces at the solid-liquid interfaces. The competitive adhesive and cleaning forces have been investigated using the finite element method (FEM) simulation, identifying the feasibility of the vortex-induced NSB removal. NSB proteins have been selectively removed experimentally both on the surface of the resonator and on other substrates which contact the vortexes. Thus, the developed hydrodynamic approach is believed to be a simple and versatile tool for NSB removal and compatible to many sensor systems. The unique feature of the hypersonic resonator is that it can be used as a gravimetric sensor as well; thus a combined NSB removal and protein detection dual functional biosensor system is developed.

摘要

非特异性结合(NSB)是基于表面的生物传感器普遍存在的问题。人们已经开发出各种方法来防止或去除非特异性结合。然而,这些方法要么增加了传感器的背景信号,要么仅限于特定的换能器界面。在这项工作中,我们开发了一种流体动力学方法,使用具有2.5吉赫兹(GHz)共振频率的微加工超声谐振器选择性地去除非特异性结合。高频装置有助于产生多个可控的微涡旋,进而在固液界面产生清洗力。利用有限元方法(FEM)模拟研究了竞争性的粘附力和清洗力,确定了涡旋诱导去除非特异性结合的可行性。已经通过实验在谐振器表面和其他与涡旋接触的底物上选择性地去除了非特异性结合蛋白。因此,所开发的流体动力学方法被认为是一种简单通用的去除非特异性结合的工具,并且与许多传感器系统兼容。超声谐振器的独特之处在于它也可以用作重量传感器;因此,开发了一种结合去除非特异性结合和蛋白质检测的双功能生物传感器系统。

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