Department of Mechanical & Industrial Engineering, University of Toronto, 5 King's College Road, Toronto, Ontario, Canada M5S 3G8.
Lab Chip. 2012 Jan 21;12(2):369-75. doi: 10.1039/c1lc20844f. Epub 2011 Nov 18.
Digital microfluidics (DMF) is a technology that facilitates electrostatic manipulation of discrete nano- and micro-litre droplets across an array of electrodes, which provides the advantages of single sample addressability, automation, and parallelization. There has been considerable interest in recent years in using DMF for cell culture and analysis, but previous studies have used immortalized cell lines. We report here the first digital microfluidic method for primary cell culture and analysis. A new mode of "upside-down" cell culture was implemented by patterning the top plate of a device using a fluorocarbon liftoff technique. This method was useful for culturing three different primary cell types for up to one week, as well as implementing a fixation, permeabilization, and staining procedure for F-actin and nuclei. A multistep assay for monocyte adhesion to endothelial cells (ECs) was performed to evaluate functionality in DMF-cultured primary cells and to demonstrate co-culture using a DMF platform. Monocytes were observed to adhere in significantly greater numbers to ECs exposed to tumor necrosis factor (TNF)-α than those that were not, confirming that ECs cultured in this format maintain in vivo-like properties. The ability to manipulate, maintain, and assay primary cells demonstrates a useful application for DMF in studies involving precious samples of cells from small animals or human patients.
数字微流控(DMF)是一种通过在电极阵列上静电操纵离散的纳升和微升液滴的技术,它提供了单样本可寻址性、自动化和并行化的优势。近年来,人们对使用 DMF 进行细胞培养和分析产生了浓厚的兴趣,但以前的研究使用的是永生化细胞系。我们在这里报告了第一个用于原代细胞培养和分析的数字微流控方法。通过使用氟碳化物剥离技术对器件的上极板进行图案化,实现了一种新的“倒置”细胞培养模式。这种方法可用于培养三种不同的原代细胞长达一周,同时还可用于实施 F-肌动蛋白和核的固定、通透和染色程序。进行单核细胞黏附到内皮细胞(ECs)的多步测定,以评估 DMF 培养的原代细胞中的功能,并使用 DMF 平台证明共培养。与未暴露于肿瘤坏死因子(TNF)-α的 ECs 相比,观察到单核细胞在 TNF-α暴露的 ECs 上黏附的数量显著增加,这证实了以这种方式培养的 ECs 保持类似于体内的特性。操纵、维持和测定原代细胞的能力表明,DMF 在涉及从小动物或人类患者珍贵细胞样本的研究中具有有用的应用。