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Nanomechanical biosensors: a new sensing tool

机译:纳米机械生物传感器:新的传感工具

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Biosensors based on microcantilevers have become a promising tool for directly detecting biomolecular interactions with great accuracy. Microcantilevers translate molecular recognition of biomolecules into nanomechanical motion that is commonly coupled to an optical or piezo-resistive read-out detector system. Riosensors based on cantilevers are a good example of how nanotechnology and biotechnology can go together. High-throughput platforms using arrays of cantilevers have been developed for simultaneous measurement and read-out of hundreds of samples. As a result, many interesting applications have been performed and the first sensor platforms are being commercialized. This review covers the basic working principles and the types of sensor format, the fabrication and the reported applications in chemical and biological analysis, trends in cantilever fabrication, examples of the commercial instrumentation available, and future developments. (C) 2005 Elsevier Ltd. All rights reserved.
机译:基于微悬臂梁的生物传感器已成为一种有前途的工具,可以直接高精度地检测生物分子之间的相互作用。微悬臂将生物分子的分子识别转换为纳米机械运动,通常将其耦合至光学或压阻式读出检测器系统。基于悬臂的Riosensors是纳米技术和生物技术如何结合的一个很好的例子。已经开发出使用悬臂阵列的高通量平台,用于同时测量和读出数百个样品。结果,已经执行了许多有趣的应用,并且第一传感器平台正在商业化。这篇综述涵盖了传感器的基本工作原理和类型,化学和生物学分析的制造和报道的应用,悬臂制造的趋势,可用的商用仪器的例子以及未来的发展。 (C)2005 Elsevier Ltd.保留所有权利。

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