Keysight Technologies Austria GmbH, Keysight Labs Linz, Gruberstrasse 40, 4020 Linz, Austria.
Johannes Kepler University Linz, Biophysics Institute, Gruberstrasse 40, 4020 Linz, Austria.
Biosensors (Basel). 2016 May 25;6(2):23. doi: 10.3390/bios6020023.
We developed an impedance quartz crystal microbalance (QCM) approach with the ability to simultaneously record mass changes and calibrated energy dissipation with high sensitivity using an impedance analyzer. This impedance QCM measures frequency shifts and resistance changes of sensing quartz crystals very stable, accurately, and calibrated, thus yielding quantitative information on mass changes and dissipation. Resistance changes below 0.3 Ω were measured with corresponding dissipation values of 0.01 µU (micro dissipation units). The broadband impedance capabilities allow measurements between 20 Hz and 120 MHz including higher harmonic modes of up to 11th order for a 10 MHz fundamental resonance frequency quartz crystal. We demonstrate the adsorbed mass, calibrated resistance, and quantitative dissipation measurements on two biological systems including the high affinity based avidin-biotin interaction and nano-assemblies of polyelectrolyte layers. The binding affinity of a protein-antibody interaction was determined. The impedance QCM is a versatile and simple method for accurate and calibrated resistance and dissipation measurements with broadband measurement capabilities for higher harmonics measurements.
我们开发了一种阻抗石英晶体微天平(QCM)方法,该方法具有使用阻抗分析仪同时记录质量变化和校准能量耗散的能力,具有高灵敏度。这种阻抗 QCM 非常稳定、准确地测量传感石英晶体的频率位移和电阻变化,并校准,从而提供有关质量变化和耗散的定量信息。可以测量低于 0.3 Ω 的电阻变化,并对应地测量 0.01 µU(微耗散单位)的耗散值。宽带阻抗能力允许在 20 Hz 至 120 MHz 之间进行测量,包括高达 10 MHz 基频共振频率石英晶体的 11 阶更高阶谐波模式。我们在两个生物系统上展示了吸附质量、校准电阻和定量耗散测量,包括基于高亲和力的亲和素-生物素相互作用和聚电解质层的纳米组装。确定了蛋白质-抗体相互作用的结合亲和力。阻抗 QCM 是一种通用且简单的方法,可用于进行准确且校准的电阻和耗散测量,并具有用于更高阶谐波测量的宽带测量能力。