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Optical force sensor array in a microfluidic device based on holographic optical tweezers

机译:基于全息光镊的微流体装置中的光学力传感器阵列

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摘要

Holographic optical tweezers (HOT) are a versatile technology, with which complex arrays and movements of optical traps can be realized to manipulate multiple microparticles in parallel and to measure the forces affecting them in the piconewton range. We report on the combination of HOT with a fluorescence microscope and a stop-flow, multi-channel microfluidic device. The integration of a highspeed camera into the setup allows for the calibration of all the traps simultaneously both using Boltzmann statistics or the power spectrum density of the particle diffusion within the optical traps. This setup permits complete spatial, chemical and visual control of the microenvironment applicable to probing chemo-mechanical properties of cellular or subcellular structures. As an example we constructed a biomimetic, quasi-two-dimensional actin network on an array of trapped polystyrene microspheres inside the microfluidic chamber. During crosslinking of the actin filaments by Mg~(2+) ions, we observe the build up of mechanical tension throughout the actin network. Thus, we demonstrate how our integrated HOT-microfluidics platform can be used as a reconfigurable force sensor array with piconewton resolution to investigate chemo-mechanical processes.
机译:全息光镊子(HOT)是一种通用技术,利用该技术,可以实现光阱的复杂阵列和移动,以并行操纵多个微粒并测量在微微微网范围内影响它们的力。我们报告与荧光显微镜和停止流,多通道微流控设备的热结合。将高速相机集成到设备中,可以同时使用Boltzmann统计数据或光阱内粒子扩散的功率谱密度对所有阱进行同时校准。这种设置允许对微环境进行完整的空间,化学和视觉控制,以探测细胞或亚细胞结构的化学机械特性。例如,我们在微流体室内的一系列聚苯乙烯微球阵列上构建了仿生的准二维肌动蛋白网络。在通过Mg〜(2+)离子交联肌动蛋白丝的过程中,我们观察到整个肌动蛋白网络中机械张力的建立。因此,我们演示了如何将我们集成的HOT-微流体平台用作具有皮克顿分辨率的可重构力传感器阵列,以研究化学机械过程。

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