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Self-Rotation of Cells in an Irrotational AC E-Field in an Opto-Electrokinetics Chip

机译:光动学芯片中不旋转交流电场中细胞的自旋转

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The use of optical dielectrophoresis (ODEP) to manipulate microparticles and biological cells has become increasingly popular due to its tremendous flexibility in providing reconfigurable electrode patterns and flow channels. ODEP enables the parallel and free manipulation of small particles on a photoconductive surface on which light is projected, thus eliminating the need for complex electrode design and fabrication processes. In this paper, we demonstrate that mouse cells comprising melan-a cells, RAW 267.4 macrophage cells, peripheral white blood cells and lymphocytes, can be manipulated in an opto-electrokinetics (OEK) device with appropriate DEP parameters. Our OEK device generates a non-rotating electric field and exerts a localized DEP force on optical electrodes. Hitherto, we are the first group to report that among all the cells investigated, melan-a cells, lymphocytes and white blood cells were found to undergo self-rotation in the device in the presence of a DEP force. The rotational speed of the cells depended on the voltage and frequency applied and the cells' distance from the optical center. We discuss a possible mechanism for explaining this new observation of induced self-rotation based on the physical properties of cells. We believe that this rotation phenomenon can be used to identify cell type and to elucidate the dielectric and physical properties of cells.
机译:由于其在提供可重构电极图案和流动通道方面的巨大灵活性,使用光学介电电泳(ODEP)来操纵微粒和生物细胞已变得越来越普遍。 ODEP使得能够平行且自由地操纵投射有光的光电导表面上的小颗粒,从而无需复杂的电极设计和制造过程。在本文中,我们证明了由黑色素细胞,RAW 267.4巨噬细胞,外周血白细胞和淋巴细胞组成的小鼠细胞可以在带有适当DEP参数的光电动力学(OEK)设备中进行操作。我们的OEK设备会产生不旋转的电场,并在光学电极上施加局部DEP力。迄今为止,我们是第一个报告在所有研究细胞中发现存在DEP力的情况下,黑色素细胞,淋巴细胞和白细胞在设备中发生自旋转的小组。单元的旋转速度取决于所施加的电压和频率以及单元与光学中心的距离。我们讨论了一种可能的机制,用于解释基于细胞物理特性的诱导自转的这一新观察。我们认为,这种旋转现象可用于识别细胞类型并阐明细胞的介电和物理性质。

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