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首页> 外文期刊>Nanoscale Horizons >Dually actuated atomic force microscope with miniaturized magnetic bead-actuators for single-molecule force measurements
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Dually actuated atomic force microscope with miniaturized magnetic bead-actuators for single-molecule force measurements

机译:具有微型磁珠驱动器的双驱动原子力显微镜,用于单分子力测量

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摘要

We report a novel atomic force microscopy (AFM) technique with dual actuation capabilities using both piezo and magnetic bead actuation for advanced single-molecule force spectroscopy experiments. The experiments are performed by manipulating magnetic microbeads using an electromagnet against a stationary cantilever. Magnetic actuation has been demonstrated before to actuate cantilevers, but here we keep the cantilever stationary and accomplish actuation via free-manipulated microstructures. The developed method benefits from significant reduction of drift, since the experiments are performed without a substrate contact and the measured force is inherently differential. In addition, shrinking the size of the actuator can minimize hydrodynamic forces affecting the cantilever. The new method reported herein allows for the application of constant force to perform force-clamp experiments without any active feedback, profiled for a deeper understanding of biomolecular interactions.
机译:我们报告了一种新颖的原子力显微镜(AFM)技术,该技术具有使用先进的单分子力光谱实验的压电和磁珠驱动双重驱动功能。通过使用电磁体对着固定悬臂操纵磁性微珠进行实验。之前已经证明了磁致动来致动悬臂,但是在这里我们使悬臂保持静止并通过自由操纵的微结构来完成致动。由于实验是在没有基材接触的情况下进行的,并且测得的力是固有的差异,因此开发的方法得益于漂移的显着降低。另外,缩小致动器的尺寸可以使影响悬臂的流体动力最小化。本文报道的新方法允许施加恒定力来执行力钳实验,而无需任何主动反馈,此方法可对生物分子相互作用进行更深入的了解。

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