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Dynamic cell Fractionation and transportation using moving dielectrophoresis

机译:使用移动介电电泳进行动态细胞分级和转运

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This study presents a new cell manipulation method using a moving dielectrophoretic force to transport or fractionate cells along a microfluidic channel.The proposed moving dielectrophoresis (mDEP) is generated by sequentially energizing a single electrode or an array of electrodes to form an electric field that moves cells continuously along the microchannel. Cell fractionation is controlled by the applied electrical frequency, and cell transportation is controlled by the interelectrode activation time. The applicability of this method was demonstrated to simultaneously fractionate and transport Saccharomyces cerevisiae yeast cells, both viable and nonviable, by operating at conditions under which the cells were subjected to positive and negative dielectrophoresis, respectively. Compared to the conventional dielectrophoresis (cDEP and traveling wave dielectrophoresis (twDEP), moving dielectrophoresis allows cells to be separated on the basis of the real part of the Clausius-Mossotti factor, as in cDEP, but yet allows the direct transportation of separated cells without using fluid flow, as in twDEP. This dielectrophoresis technique provides a new way to manipulate cells and can be readily implemented on programmable multielectrode devices.
机译:这项研究提出了一种新的细胞操纵方法,该方法利用移动的介电泳力沿微流体通道转运或分离细胞。拟议的移动介电电泳(mDEP)是通过依次激励单个电极或电极阵列以形成可移动的电场而产生的细胞沿着微通道连续不断。细胞分级受施加的电频率控制,细胞转运受电极间激活时间控制。通过在细胞分别经受正和负介电泳的条件下操作,证明了该方法的适用性同时分离和运输有活力和无活力的酿酒酵母酵母细胞。与常规介电电泳(cDEP和行波介电电泳(twDEP)相比,移动介电电泳允许像Clause-Mossotti因子的实部一样对细胞进行分离,就像在cDEP中一样,但允许直接运输分离的细胞而无需与twDEP中一样,这种流体电泳技术提供了一种操纵细胞的新方法,并且可以很容易地在可编程多电极设备上实现。

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