Wang Minjiao, Wang Zhihua, Zhang Mingkan, Guo Wei, Li Ning, Deng Yuliang, Shi Qihui
Key Laboratory of Systems Biomedicine (Ministry of Education), Shanghai Center for Systems Biomedicine, Shanghai Jiao Tong University, Shanghai, China.
J Mater Chem B. 2017 Dec 14;5(46):9114-9120. doi: 10.1039/c7tb02318a. Epub 2017 Nov 13.
A microfluidic chip with single-sided herringbone microstructure has been developed to isolate circulating tumor cells (CTCs) from blood samples of cancer patients. Here, we describe a new double-sided herringbone chip in which staggered herringbone micromixers are placed on both top and bottom surfaces of microchannels. The double-sided herringbone structure enables a high CTC capture efficiency of whole blood samples without depletion of red blood cells because of the effects of leukocyte margination and plasma skimming. However, compared with the traditional single-sided herringbone chip, the double-sided herringbone chip has more complicated geometrical design, leading to a difficulty in experimental optimization of geometrical parameters. In this study, we developed an analytical model to geometrically optimize the herringbone chip by investigating the interactions between cells and antibody-immobilized device surfaces for enhancing CTC capture efficiency. On-chip cell capture experiments for validating modeling results were performed by spiking cultured EpCAM-positive tumor cells into blood samples from healthy donors. Based on the geometrical parameters optimized from the single-sided herringbone chip, the geometrically optimized double-sided herringbone chip enables a capture efficiency of 94 ± 4% of rare tumor cells directly from whole blood.
一种具有单面人字形微结构的微流控芯片已被开发出来,用于从癌症患者的血液样本中分离循环肿瘤细胞(CTC)。在此,我们描述了一种新的双面人字形芯片,其中交错的人字形微混合器被放置在微通道的顶面和底面。由于白细胞靠边和血浆撇除的作用,双面人字形结构能够在不消耗红细胞的情况下实现对全血样本的高CTC捕获效率。然而,与传统的单面人字形芯片相比,双面人字形芯片具有更复杂的几何设计,导致几何参数的实验优化存在困难。在本研究中,我们通过研究细胞与固定有抗体的装置表面之间的相互作用,开发了一个分析模型来对人字形芯片进行几何优化,以提高CTC捕获效率。通过将培养的EpCAM阳性肿瘤细胞加入健康供体的血液样本中,进行了芯片上的细胞捕获实验以验证建模结果。基于从单面人字形芯片优化得到的几何参数,经过几何优化的双面人字形芯片能够直接从全血中捕获94±4%的罕见肿瘤细胞。