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A Serpentine Microchannel with Added Cavities Platform for Magnetic Separation of Lung Adenocarcinoma Cells Utilizing Aptamer-Conjugated Magnetic Bead Approach

机译:一种蛇形微通道,利用适体缀合的磁珠接近的肺腺癌细胞磁性分离腔平台

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This study presents an efficient isolation of human lung carcinoma cell line (A549) platform by utilizing the proposal a serpentine microchannel with added cavities (SMAC) platform. The magnetic micro-bead isolation performance in proposed serpentine channel was simulated using COMSOL Multiphysics. The experimental procedures of aptamer molecular conjugation on magnetic microbeads affined to A549 cell line were also reported. The experimental results indicated that at the flow rate of 5 µL/s, the capture rate of human lung carcinoma cell reached above 70% in less than 15 min, whereas non-target cell capture rate was around 1.5%. The proposed platform shows its potential of high selectivity, portable, and simple-to-operate, which are suitable considerations for developing point-of-care applications in various biological and clinical purposes.
机译:本研究通过利用加入腔(SMAC)平台的蛇形微通道,有效地分离人肺癌细胞系(A549)平台。 使用COMSOL Multiphysics模拟了所提出的蛇形通道中的磁性微珠隔离性能。 还报道了对A549细胞系的磁性微珠对磁微珠的适体分子缀合的实验步骤。 实验结果表明,在5μl/ s的流速下,人肺癌电池的捕获率在少于15分钟的少于70%以上,而非靶细胞捕获率约为1.5%。 该拟议平台显示其具有高选择性,便携式和简单操作的潜力,这是在各种生物和临床目的中开发护理点应用的适当考虑。

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