首页> 外文会议>ASME international mechanical engineering congress and exposition >ENHANCING THE CELL VIABILITY IN HIGH THROUGHPUT DETERMINISTIC LATERAL DISPLACEMENT SEPARATION OF CIRCULATING TUMOR CELLS
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ENHANCING THE CELL VIABILITY IN HIGH THROUGHPUT DETERMINISTIC LATERAL DISPLACEMENT SEPARATION OF CIRCULATING TUMOR CELLS

机译:在循环肿瘤细胞高通量确定性横向移位分离中增强细胞活力

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Cancer is among a major health concerns all over the world. Cancer metastasis, which defines as the migration of malignant cells from original sites to distant organs, is the main reason of death due to cancer and there is growing evidence that Circulating Tumor Cells (CTCs) are responsible for initiating the metastasis. Due to the importance of these bioparticles in biotechnology and medicine, there is a growing interest to study and separate them through different techniques especially microfluidic label-free technologies. One such technology, termed Deterministic Lateral Displacement (DLD) has recently shown promising abilities to separate cells and particles of different sizes. However, DLD is a separation method that takes advantages of the predictable flow laminae of low Reynolds number (Re) fluid flow. In order to achieve higher device throughput, effects of higher Reynolds number flow on DLD device should be studied. Additionally, the higher flow rates would apply higher forces and shear stresses on the cells which threaten the cell's viability. In this study, employing numerical simulation, the effect of high Re number on DLD device for separating cancer cells has been investigated. Specifically, we conducted force analysis and by focusing on the downstream gap distance between the posts, we improved the device which results in less cell deformation. Our developed numerical model and presented results lay the groundwork for design and fabrication of high-throughput DLD microchips for enhanced separation of CTCs.
机译:癌症是全世界主要的健康问题之一。癌症转移定义为恶性细胞从原始部位向远处器官的迁移,是癌症导致死亡的主要原因,并且越来越多的证据表明循环肿瘤细胞(CTC)引起了转移。由于这些生物颗粒在生物技术和医学中的重要性,人们越来越关注通过不同的技术,特别是无微流体无标记技术来研究和分离它们。一种称为确定性横向位移(DLD)的技术最近显示出有希望的能力来分离不同大小的细胞和颗粒。但是,DLD是一种分离方法,可利用低雷诺数(Re)流体流量的可预测流量层流。为了获得更高的设备吞吐量,应研究更高雷诺数流量对DLD设备的影响。另外,较高的流速将对细胞施加较高的力和剪切应力,从而威胁细胞的生存能力。在这项研究中,采用数值模拟,研究了高Re数对DLD分离癌细胞的装置的影响。具体来说,我们进行了力分析,并着眼于柱子之间的下游间隙距离,我们改进了设备,从而减少了单元变形。我们开发的数值模型和给出的结果为设计和制造高通量DLD微芯片以增强CTC分离奠定了基础。

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