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首页> 外文期刊>Lab on a chip >Application of a new microcantilever biosensor resonating at the air-liquid interface for direct insulin detection and continuous monitoring of enzymatic reactions
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Application of a new microcantilever biosensor resonating at the air-liquid interface for direct insulin detection and continuous monitoring of enzymatic reactions

机译:在气液界面共振的新型微悬臂生物传感器在直接胰岛素检测和酶反应连续监测中的应用

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摘要

Here we describe the application of a recently developed high-resolution microcantilever biosensor resonating at the air-liquid interface for the continuous detection of antigen-antibody and enzyme-substrate interactions. The cantilever at the air-liquid interface demonstrated 50% higher quality factor and a 5.7-fold increase in signal-to-noise-ratio (SNR) compared with one immersed in the purified water. First, a label-free detection of a low molecular weight protein (insulin, 5.8 kDa) in physiological concentration was demonstrated. The liquid facing side of the cantilever was functionalized by coating its surface with insulin antibodies, while the opposite side was exposed to air. The meniscus membrane at the micro-slit around the cantilever sustained the liquid in the microchannel. After optimizing the process of surface functionalization, the resonance frequency shift was successfully measured for insulin solutions of 0.4, 2.0, and 6.3 ng ml~(-1). To demonstrate additional application of the device for monitoring enzymatic protein degradation, the liquid facing microcantilever surface was coated with human recombinant SOD1 (superoxide dismutase 1) and exposed to various concentrations of proteinase K solution, and the kinetics of the SOD1 digestion was continuously monitored. The results showed that it is a suitable tool for sensitive protein detection and analysis.
机译:在这里,我们描述了在气液界面共振的最新开发的高分辨率微悬臂生物传感器的应用,用于连续检测抗原-抗体和酶-底物的相互作用。与浸入纯净水中的悬臂相比,气液界面处的悬臂具有更高的品质因数50%,信噪比(SNR)提高了5.7倍。首先,证明了在生理浓度下无标记检测低分子量蛋白质(胰岛素,5.8 kDa)。悬臂的面向液体的一面通过在其表面涂上胰岛素抗体进行功能化,而另一侧则暴露于空气中。悬臂周围微缝隙处的弯月面膜将液体保持在微通道中。通过优化表面功能化过程,成功测量了0.4、2.0和6.3 ng ml〜(-1)胰岛素溶液的共振频率偏移。为了证明该设备可用于监测酶促蛋白质降解,将其表面微悬臂表面涂有人类重组SOD1(超氧化物歧化酶1)并暴露于各种浓度的蛋白酶K溶液中,并持续监测SOD1消化的动力学。结果表明,它是用于敏感蛋白质检测和分析的合适工具。

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