Membrane-based chemomechanical transducer for the detection of aptamer-protein binding

Jun-kyu Choi, Junghoon Lee
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Abstract

We report a membrane-based chemomechanical transducer for the sensitive detection of surface molecular reaction through a highly reliable common mode rejection (CMR) technique. Chemomechanical transduction, originally based on the micro-cantilever, offers potential benefits: label-free assay, and real-time monitoring of molecular interaction via mechanical deformation [1, 2]. Membrane-based approaches have been proposed to overcome the inherent limitations of the micro-cantilever system, but most results were either inconclusive or far from practical standards. Here we show clear-cut detection of molecular binding using a membrane transducer fabricated with conventional MEMS technology. This goal is achieved through the implementation of CMR that rejects physical effects such as pressure and temperature, leaving only specific chemical binding responsible for resulting signal. We demonstrate highly specific recognition of thrombin protein by using DNA aptamer immobilized on the membrane surface with the limit of detection down to ~3 pM, and the wide dynamic range > 5×104.
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用于检测适配体-蛋白结合的膜化学机械传感器
我们报道了一种基于膜的化学机械传感器,用于通过高度可靠的共模抑制(CMR)技术灵敏检测表面分子反应。化学机械转导,最初基于微悬臂,提供了潜在的好处:无标签分析,并通过机械变形实时监测分子相互作用[1,2]。已经提出了基于膜的方法来克服微悬臂系统的固有局限性,但大多数结果要么是不确定的,要么远离实际标准。在这里,我们展示了使用传统MEMS技术制造的膜传感器清晰地检测分子结合。这一目标是通过CMR的实施来实现的,CMR拒绝物理效应,如压力和温度,只留下特定的化学结合负责产生信号。我们利用固定在膜表面的DNA适体证明了对凝血酶蛋白的高度特异性识别,检测限低至~ 3pm,动态范围宽> 5×104。
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