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A novel microfluidic high-throughput resistive pulse sensing device for cells analysis

机译:一种用于细胞分析的新型微流体高通量电阻脉冲传感装置

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Microfluidic impedance-based devices offer a simple method for counting and sizing particles and cells in fields of biomedical research and clinical diagnosis. In this work, we present design, fabrication and operational characteristics of a novel high throughput original MEMS-based Coulter counter. This microfluidic device possesses two sub channels including two pairs of coplanar Au/Cr electrodes in each channels which allows double detection of the particles simultaneously and increases the throughput. The present design provides minimizing the cross talk and obviating the need for hydrodynamic focusing of the sample particles by adjusting Y shape insulation obstacle in direction of flow. Moreover, reducing coincidence events and removing electrode polarization effect were purposed by applying optimum sizes for electrodes considering the ease of fabrication and low costs. The reliability of the novel device was evaluated for polystyrene particles and cancer cells in conductive solutions. Results, which were recorded as relative resistance pulses across four sensing zones, illustrate the capability of the double-channel proposed device in detecting, counting and sizing 10 and 20 mu m polystyrene particles. The superiority of present design was proved by relative counting error of below 3 and 11% for the 10 mu m and 20 mu m particles, respectively and a throughput of hundreds particles per second. Aiming at demonstrating the functionality of the proposed device in the biomedical area, counting of SP2/0 cells was performed. The measured counting outputs for cells in the size range of 5.63-17.6 mu m were validated with results of hemocytometer cell counter, with relative error less than 7%.
机译:基于微流体阻抗的装置提供了一种简单的方法,用于在生物医学研究和临床诊断领域中计数和施加粒子和细胞。在这项工作中,我们提出了一种新型高吞吐量原始MEMS的Coulter计数器的设计,制造和操作特性。该微流体装置具有两个子通道,包括每个通道中的两对共面Au / Cr电极,其允许同时重新检测颗粒并增加吞吐量。本设计通过在流动方向上调整Y形绝缘障碍来提供最小化串扰并避免样品颗粒的流体动力学聚焦的需要。此外,通过考虑易于制造和低成本,通过施加最佳尺寸来施加最佳尺寸来减少重合事件和去除电极偏振效应。在导电溶液中评估了新型器件的可靠性。结果被记录为四个感测区域的相对电阻脉冲,说明了双通道提出的装置在检测,计数和施加10和20μM聚苯乙烯颗粒中的能力。通过相对计数误差为10μm和20μm颗粒的相对计数误差证明了本设计的优越性,分别是每秒数百颗粒的吞吐量。旨在证明所提出的装置在生物医学区域中的功能,进行SP2 / 0细胞的计数。用血细胞计细胞计数器的结果验证了5.63-17.6μm的细胞的测量计数输出,相对误差小于7%。

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