Surface acoustic wave biosensors for biomolecular interaction analysis

K. Lange, A. Voigt, M. Rapp
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引用次数: 5

Abstract

HPSSW type, (horizontally polarized surface shear wave) surface acoustic wave (SAW) devices have been proven to be suitable for biosensing applications. They allow an easy and fast label free detection of molecules with biological relevance via direct detection of the adsorbed mass. However, SAW device structures are usually connected by bond wires. In consequence sampling chambers suffer from relatively big flow cell volumes /spl sim/ 50 /spl mu/l. We developed new resonator filter based HPSSW devices with gold transducers. They work at an operating frequency of 433.9 MHz on 36/spl deg/YX LiTaO/sub 3/ as substrate material. Bonding wires could be eliminated as the sensor is capacitively coupled with the driving electronics via large contact pads. The new coupling concept (originally developed for our gas sensing approach) enables the reduction of the sample volume in the flow cell down to 60 nl. This decreases sample consumption and reduces the length of the measurement cycles. Affinity assays were realized using this SAW biosensor. Measurements with the systems urease/anti-urease and estradiol/estrogen receptor are shown exemplarily. In the latter case it could be shown that reference SAW surfaces without binding partner have the potential to enable the quantification of binding reactions even in complex media. For automated sample handling, the SAW detection unit is integrated in a flow injection analysis (FIA) system. A cost-effective, compact demonstration instrument for SAW biosensing was developed.
用于生物分子相互作用分析的表面声波生物传感器
HPSSW型(水平极化表面剪切波)表面声波(SAW)器件已被证明适用于生物传感应用。它们允许通过直接检测吸附质量对具有生物学相关性的分子进行简单快速的无标签检测。然而,SAW器件结构通常通过键合线连接。因此,取样室的流动池体积/spl sim/ 50 /spl mu/l较大。我们开发了一种新的基于谐振器滤波器的金换能器HPSSW器件。作为衬底材料,它们在36/spl度/YX / LiTaO/sub 3/上工作频率为433.9 MHz。由于传感器通过大型接触垫与驱动电子器件电容耦合,因此可以消除键合线。新的耦合概念(最初是为我们的气体传感方法开发的)可以将流动池中的样本量减少到60nl。这减少了样品消耗,减少了测量周期的长度。使用SAW生物传感器进行亲和测定。测量系统脲酶/抗脲酶和雌二醇/雌激素受体的例子显示。在后一种情况下,可以证明没有结合伙伴的参考SAW表面即使在复杂介质中也有可能实现结合反应的量化。对于自动样品处理,SAW检测单元集成在流动注射分析(FIA)系统中。研制了一种高效、紧凑的SAW生物传感演示仪器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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