Wang Zhanhui, Kim Min-Cheol, Marquez Manuel, Thorsen Todd
Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Lab Chip. 2007 Jun;7(6):740-5. doi: 10.1039/b618734j. Epub 2007 Apr 4.
In this paper, we report on the development of a multilayer elastomeric microfluidic array platform for the high-throughput cell cytotoxicity screening of mammalian cell lines. Microfluidic channels in the platform for cell seeding are orthogonal to channels for toxin exposure, and within each channel intersection is a circular chamber with cell-trapping sieves. Integrated, pneumatically-actuated elastomeric valves within the device isolate the microchannel array within the device into parallel rows and columns for cell seeding and toxin exposure. As a demonstration of the multiplexing capability of the platform, a microfluidic array containing 576 chambers was used to screen three cell types (BALB/3T3, HeLa, and bovine endothelial cells) against a panel of five toxins (digitonin, saponin, CoCl(2), NiCl(2), acrolein). Evaluation of on-chip cell morphology and viability was carried out using fluorescence microscopy, with outcomes comparable to microtiter plate cytotoxicity assays. Using this scalable platform, cell seeding and toxin exposure can be carried out within a single microfluidic device in a multiplexed format, enabling high-density parallel cytotoxicity screening while minimizing reagent consumption.
在本文中,我们报告了一种多层弹性体微流体阵列平台的开发,用于对哺乳动物细胞系进行高通量细胞毒性筛选。该平台中用于细胞接种的微流体通道与用于毒素暴露的通道相互正交,并且在每个通道交叉处有一个带有细胞捕获筛网的圆形腔室。设备内集成的气动弹性体阀将设备内的微通道阵列隔离成用于细胞接种和毒素暴露的平行行和列。作为该平台多重检测能力的一个例证,一个包含576个腔室的微流体阵列被用于针对一组五种毒素(洋地黄皂苷、皂角苷、CoCl₂、NiCl₂、丙烯醛)对三种细胞类型(BALB/3T3、HeLa和牛内皮细胞)进行筛选。使用荧光显微镜对芯片上的细胞形态和活力进行评估,结果与微量滴定板细胞毒性测定相当。使用这个可扩展的平台,可以在单个微流体设备内以多重形式进行细胞接种和毒素暴露,从而实现高密度平行细胞毒性筛选,同时将试剂消耗降至最低。