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DYNAMICS OF COMPOUND DROPLET PASSING THROUGH A CONICAL CTC MICROFILTER

机译:通过锥形CTC微滤器通过复合液滴的动力学

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Circulating tumor cells (CTCs) are important biomarkers which can be used for early-stage cancer detection and treatment. Developing an efficient approach to detect CTCs from peripheral blood is a challenging problem due to their extreme rarity. The CTC micro filtration provides a good solution as a critical method based on the physical property of CTCs. In this study, we employed a compound droplet model to investigate the transport behavior of a CTC squeezing through a conical-shaped microfilter. The compound droplet model of CTC is composed of a cortical membrane, cytoplasm and the nucleus. Numerically, we used the octree-based Adaptive-Mesh-Refinement (AMR) to analyze the deformable CTC flowing through a microfilter with non-uniform cross-sections. We investigated the pressure-deformability behavior of the cell with different nuclear to cytoplasmic ratio (N/C ratio). Our study revealed that the nucleus smaller than the filter pore did not affect the pressure behaviors significantly. However, when the nucleus is larger than the filter pore size, the pressure behaviors are greatly affected. We also studied the effects of the flow rate on the cell squeezing process. We found that the critical pressure increases significantly with the flow rate. Our study can provide valuable information about cell transport behavior in conical-shaped micro filters.
机译:循环肿瘤细胞(CTC)是重要的生物标志物,可用于早期癌症的检测和治疗。由于其极罕见,因此开发一种从外周血中检测CTC的有效方法是一个具有挑战性的问题。基于四氯化碳的物理特性,四氯化碳微过滤提供了一种很好的解决方案,作为一种关键方法。在这项研究中,我们采用了复合液滴模型来研究CTC挤过圆锥形微滤器的运输行为。 CTC的复合液滴模型由皮质膜,细胞质和细胞核组成。在数值上,我们使用基于八叉树的自适应网格精化(AMR)分析流经横截面不均匀的微滤器的可变形CTC。我们研究了具有不同核与细胞质比(N / C比)的细胞的压力-可变形性行为。我们的研究表明,比过滤孔小的核不会显着影响压力行为。但是,当核大于过滤器孔径时,压力行为会受到很大影响。我们还研究了流速对细胞挤压过程的影响。我们发现临界压力随着流量的增加而显着增加。我们的研究可以提供有关圆锥形微过滤器中细胞运输行为的有价值的信息。

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