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Capacitive Field-Effect Biosensor Studying Adsorption of

机译:电容场效应生物传感器研究吸附

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摘要

Plant virus-like particles, and in particular, tobacco mosaic virus (TMV) particles, are increasingly being used in nano- and biotechnology as well as for biochemical sensing purposes as nanoscaffolds for the high-density immobilization of receptor molecules. The sensitive parameters of TMV-assisted biosensors depend, among others, on the density of adsorbed TMV particles on the sensor surface, which is affected by both the adsorption conditions and surface properties of the sensor. In this work, Ta2O5-gate field-effect capacitive sensors have been applied for the label-free electrical detection of TMV adsorption. The impact of the TMV concentration on both the sensor signal and the density of TMV particles adsorbed onto the Ta2O5-gate surface has been studied systematically by means of field-effect and scanning electron microscopy methods. In addition, the surface density of TMV particles loaded under different incubation times has been investigated. Finally, the field-effect sensor also demonstrates the label-free detection of penicillinase immobilization as model bioreceptor on TMV particles.
机译:植物病毒样颗粒,特别是烟草叶片病毒(TMV)颗粒越来越多地用于纳米和生物技术以及作为纳米电导的生物化学传感目的,用于接受受体分子的高密度固定。 TMV辅助生物传感器的敏感参数依赖于传感器表面上吸附的TMV颗粒的密度,其受传感器的吸附条件和表面性质的影响。在这项工作中,TA2O5栅极场效应电容传感器已应用于无标签的TMV吸附的无标签电气检测。通过场效应和扫描电子显微镜方法系统地研究了TMV浓度对吸附到Ta2O5栅极表面上的TMV颗粒的密度的影响。另外,研究了在不同孵育时间下装载的TMV颗粒的表面密度。最后,场效应传感器还证明了在TMV颗粒上的模型生物受体作为模型生物的无标记检测。

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