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Low-cost, in-liquid measuring system using a novel compact oscillation circuit and quartz-crystal microbalances (QCMs) as a versatile biosensor platform

机译:使用新型紧凑型振荡电路和石英晶体微量天平(QCM)作为多功能生物传感器平台的低成本液体测量系统

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摘要

Quartz-crystal microbalances (QCMs) are commercially available mass sensors which mainly consist of a quartz resonator that oscillates at a characteristic frequency, which shifts when mass changes due to surface binding of molecules. In addition to mass changes, the viscosity of gases or liquids in contact with the sensor also shifts the resonance but also influences the quality factor (Q-factor). Typical biosensor applications demand operation in liquid environments leading to viscous damping strongly lowering Q-factors. For obtaining reliable measurements in liquid environments, excellent resonator control and signal processing are essential but standard resonator circuits like the Pierce and Colpitts oscillator fail to establish stable resonances. Here we present a low-cost, compact and robust oscillator circuit comprising of state-of-the-art commercially available surface-mount technology components which stimulates the QCMs oscillation, while it also establishes a control loop regulating the applied voltage. Thereby an increased energy dissipation by strong viscous damping in liquid solutions can be compensated and oscillations are stabilized. The presented circuit is suitable to be used in compact biosensor systems using custom-made miniaturized QCMs in microfluidic environments. As a proof of concept we used this circuit in combination with a customized microfabricated QCM in a microfluidic environment to measure the concentration of C-reactive protein (CRP) in buffer (PBS) down to concentrations as low as 5 μg mL-1. © 2017 Author(s).
机译:石英晶体微天平(QCM)是可商购的质量传感器,主要由石英谐振器组成,该石英谐振器以特征频率振荡,当质量由于分子的表面结合而改变时,该石英谐振器也会移动。除了质量变化外,与传感器接触的气体或液体的粘度还会改变共振,但也会影响质量因子(Q因子)。典型的生物传感器应用要求在液体环境中运行,从而导致粘性阻尼大大降低Q因子。为了在液体环境中获得可靠的测量结果,出色的谐振器控制和信号处理是必不可少的,但是标准的谐振器电路(如Pierce和Colpitts振荡器)无法建立稳定的谐振。在这里,我们介绍了一种低成本,紧凑且坚固的振荡器电路,该电路包括最先进的市售表面贴装技术组件,可激发QCM振荡,同时还建立了一个调节施加电压的控制环路。由此,可以补偿由于液体溶液中的强粘性阻尼而增加的能量耗散,并且振荡得以稳定。提出的电路适用于在微流体环境中使用定制化微型QCM的紧凑型生物传感器系统。作为概念验证,我们在微流体环境中将此电路与定制的微型QCM结合使用,以测量低至5μgmL-1的缓冲液(PBS)中C反应蛋白(CRP)的浓度。 ©2017作者。

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