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Surface acoustic wave biosensors: a review

机译:表面声波生物传感器:综述

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This review presents an overview of 20 years of worldwide development in the field of biosensors based on special types of surface acoustic wave (SAW) devices that permit the highly sensitive detection of biorelevant molecules in liquid media (such as water or aqueous buffer solutions). 1987 saw the first approaches, which used either horizontally polarized shear waves (HPSW) in a delay line configuration on lithium tantalate (LiTaO3) substrates or SAW resonator structures on quartz or LiTaO3 with periodic mass gratings. The latter are termed “surface transverse waves” (STW), and they have comparatively low attenuation values when operated in liquids. Later Love wave devices were developed, which used a film resonance effect to significantly reduce attenuation. All of these sensor approaches were accompanied by the development of appropriate sensing films. First attempts used simple layers of adsorbed antibodies. Later approaches used various types of covalently bound layers, for example those utilizing intermediate hydrogel layers. Recent approaches involve SAW biosensor devices inserted into compact systems with integrated fluidics for sample handling. To achieve this, the SAW biosensors can be embedded into micromachined polymer housings. Combining these two features will extend the system to create versatile biosensor arrays for generic lab use or for diagnostic purposes.
机译:这篇综述概述了基于特殊类型的表面声波(SAW)设备的生物传感器领域在全球范围内20年的发展概况,该设备可以高度灵敏地检测液体介质(例如水或缓冲水溶液)中的生物相关分子。 1987年出现了第一种方法,该方法要么在钽酸锂(LiTaO3 )衬底上的延迟线配置中使用水平极化剪切波(HPSW),要么在石英或LiTaO3 上具有周期性质量光栅的SAW谐振器结构中使用。后者被称为“表面横波”(STW),当在液体中操作时,它们具有相对较低的衰减值。后来开发了Love波器件,该器件利用薄膜共振效应来显着降低衰减。所有这些传感器方法都伴随着适当的传感膜的发展。首次尝试使用吸附抗体的简单层。后来的方法使用了各种类型的共价结合层,例如那些利用中间水凝胶层的层。最近的方法涉及将SAW生物传感器设备插入具有集成流体技术的紧凑系统中,以进行样品处理。为此,可以将SAW生物传感器嵌入微机械加工的聚合物外壳中。结合这两个功能将扩展系统,以创建通用的生物传感器阵列,以用于一般实验室用途或用于诊断目的。

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