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A micromachined membrane-based active probe for biomolecular mechanics measurement

机译:一种基于微机械膜的生物分子力学活性探针

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摘要

A novel micromachined, membrane-based probe has been developed and fabricated as assays to enable parallel measurements. Each probe in the array can be individually actuated, and the membrane displacement can be measured with high resolution using an integrated diffraction-based optical interferometer. To illustrate its application in single-molecule mechanics experiments, this membrane probe was used to measure unbinding forces between L-selectin reconstituted in a polymer-cushioned lipid bilayer on the probe membrane and an antibody adsorbed on an atomic force microscope cantilever. Piconewton range forces between single pairs of interacting molecules were measured from the cantilever bending while using the membrane probe as an actuator. The integrated diffraction-based optical interferometer of the probe was demonstrated to have < 10 fm Hz~(-1/2) noise floor for frequencies as low as 3 Hz with a differential readout scheme. With soft probe membranes, this low noise level would be suitable for direct force measurements without the need for a cantilever. Furthermore, the probe membranes were shown to have 0.5 mu m actuation range with a flat response up to 100 kHz, enabling measurements at fast speeds.
机译:已经开发出一种新型的基于膜的微机械探针,并将其制造为可进行平行测量的测定方法。阵列中的每个探针都可以单独驱动,并且可以使用基于衍射的集成光学干涉仪以高分辨率测量膜位移。为了说明其在单分子力学实验中的应用,该膜探针用于测量重构在膜上的聚合物缓冲脂质双层中的L选择素与吸附在原子力显微镜悬臂上的抗体之间的解键力。使用膜探针作为驱动器时,通过悬臂弯曲测量单对相互作用分子之间的皮克牛顿范围力。探头的集成的基于衍射的光学干涉仪经证明具有差分读出方案,对于低至3 Hz的频率,其本底噪声<10 fm Hz〜(-1/2)。对于软探针膜,这种低噪声水平将适用于直接力测量,而无需悬臂。此外,探针膜的致动范围显示为0.5μm,平坦响应高达100 kHz,可实现快速测量。

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