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Electroacoustic miniaturized DNA-biosensor

机译:电声小型化DNA生物传感器

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A micrometer-sized electroacoustic DNA-biosensor was developed. The device included a thin semi-crystalline polyethylene terephthalate (PET) dielectric layer with two Ag microband electrodes on one side and a DNA thiol-labeled monolayer adsorbed on a gold surface on the other. A resonance wave was observed at 29 MHz with a network analyzer, upon AC voltage application between the two Ag electrodes, corresponding to electromechanical coupling induced by molecular dipoles of the PET polymer chain in the dielectric layer. It was found that the device size and geometry were well adapted to detect DNA hybridization, by measuring the capacity of the resonance response evolution: hybridization induced polarization of the dielectric material that affected the electromechanical coupling established in the dielectric layer. The 0.2 mm 2 sensor sensitive area allows detection in small volumes and still has higher detection levels for bioanalytical applications, the non-contact configuration adopted avoids electric faradic reactions that may damage biosensor sensitive layers, and finally, PET is a costless raw material, easy to process and well adapted for large scale production. The well-balanced technological and economic advantages of this kind of device make it a good candidate for biochip integration.
机译:微米大小的电声DNA生物传感器的开发。该设备包括一个薄的半结晶聚对苯二甲酸乙二酯(PET)介电层,其一侧具有两个Ag微带电极,而另一侧具有吸附在金表面的DNA硫醇标记的单层。在两个Ag电极之间施加交流电压后,使用网络分析仪在29 MHz处观察到共振波,这对应于介电层中PET聚合物链的分子偶极子引起的机电耦合。通过测量共振响应演变的能力,发现设备的尺寸和几何形状非常适合检测DNA杂交:杂交引起的介电材料极化影响了在介电层中建立的机电耦合。 0.2 mm 2的传感器敏感区域允许小体积检测,并且在生物分析应用中仍具有更高的检测水平,采用的非接触配置避免了电法拉第反应,可能会损坏生物传感器敏感层,最后,PET是一种无价的原材料,易于操作进行加工并非常适合大规模生产。这种设备的均衡技术和经济优势使其成为生物芯片集成的理想选择。

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