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Detection of proteins and intact microorganisms using microfabricated flexural plate silicon resonator arrays

机译:使用微型弯曲板式硅谐振器阵列检测蛋白质和完整微生物

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We are developing biosensor arrays that are based on microfabricated silicon flexural plate wave (FPW) resonators coated with molecular recognition chemistry. The resonators within the micro-chemical analysis array (μCANARY) are micro-electromechanical (MEM) sensors that have been miniaturized to allow many independently addressable sensors to be integrated within a single silicon chip. The target analyte of an individual sensor within the chip is selectively detected by depositing molecular recognition component (or "coating") onto the sensor surface, and monitoring changes in the frequency and phase of the resonance as the coating interacts with the analyte. The ultimate goal of this project is integration of hundreds of miniature resonators within a single chip for detection of biological species. As proof of concept demonstration, we describe here the detection of proteins and intact microorganisms using 2-element and 8-element μCANARY sensor chips and address electronics. Preliminary results of sensitivity, selectivity, and surface regeneration methods of the sensor are presented. Detection of proteins and microorganisms with the μCANARY sensor were confirmed by optical measurements.
机译:我们正在开发基于涂有分子识别化学物质的微细加工的硅挠性板波(FPW)谐振器的生物传感器阵列。微化学分析阵列(μCANARY)中的谐振器是微机电(MEM)传感器,已被小型化以允许将许多可独立寻址的传感器集成在单个硅芯片中。通过将分子识别成分(或“涂层”)沉积到传感器表面,并在涂层与分析物相互作用时监测共振频率和相位的变化,来选择性地检测芯片内单个传感器的目标分析物。该项目的最终目标是在单个芯片中集成数百个微型谐振器,以检测生物物种。作为概念验证的证据,我们在这里描述使用2元素和8元素μCANARY传感器芯片和地址电子设备检测蛋白质和完整微生物。给出了传感器的灵敏度,选择性和表面再生方法的初步结果。通过μCANARY传感器对蛋白质和微生物的检测通过光学测量得到了证实。

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