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Theoretical and experimental study of the role of cell-cell dipole interaction in dielectrophoretic devices: application to polynomial electrodes.

机译:在电泳装置中细胞间偶极相互作用的理论和实验研究:应用于多项式电极。

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摘要

Background\ud\udWe aimed to investigate the effect of cell-cell dipole interactions in the equilibrium distributions in dielectrophoretic devices.\udMethods\ud\udWe used a three dimensional coupled Monte Carlo-Poisson method to theoretically study the final distribution of a system of uncharged polarizable particles suspended in a static liquid medium under the action of an oscillating non-uniform electric field generated by polynomial electrodes. The simulated distributions have been compared with experimental ones observed in the case of MDA-MB-231 cells in the same operating conditions.\udResults\ud\udThe real and simulated distributions are consistent. In both cases the cells distribution near the electrodes is dominated by cell-cell dipole interactions which generate long chains.\udConclusions\ud\udThe agreement between real and simulated cells’ distributions demonstrate the method’s reliability. The distribution are dominated by cell-cell dipole interactions even at low density regimes (105 cell/ml). An improved estimate for the density threshold governing the interaction free regime is suggested.
机译:背景\ ud \ ud我们旨在研究细胞间偶极相互作用对介电泳设备平衡分布的影响。\ udMethods \ ud \ ud我们使用三维耦合蒙特卡洛-泊松方法从理论上研究了一个系统的最终分布在多项式电极产生的振荡非均匀电场的作用下,未充电的可极化极化粒子悬浮在静态液体介质中。在相同的操作条件下,已将模拟分布与在MDA-MB-231细胞情况下观察到的实验分布进行了比较。\ udResults \ ud \ ud真实分布与模拟分布是一致的。在这两种情况下,电极附近的细胞分布都以产生长链的细胞间偶极相互作用为主导。\ ud结论\ ud \ ud真实细胞和模拟细胞分布之间的一致性证明了该方法的可靠性。即使在低密度条件下(105细胞/ ml),细胞-细胞偶极子相互作用也决定了分布。建议对控制无相互作用机制的密度阈值进行改进的估计。

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