State Key Laboratory of Integrated Optoelectronics, Institute of Semiconductors, Chinese Academy of Sciences, Beijing, China.
University of Chinese Academy of Sciences, Beijing, China.
Sci Rep. 2017 Aug 21;7(1):8963. doi: 10.1038/s41598-017-08661-z.
Tumour cell migration has an important impact on tumour metastasis. Magnetic manipulation is an ascendant method for guiding and patterning cells. Here, a unique miniaturized microfluidic chip integrating cell isolation and migration assay was designed to isolate and investigate cell migration. The chip was fabricated and composed of a magnet adapter, a polytetrafluoroethylene(PDMS) microfluidic chip and six magnetic rings. This device was used to isolate MCF-7 cells from MDA-MB-231-RFP cells and evaluate the effects of TGF-β on MCF-7 cells. First, the two cell types were mixed and incubated with magnetic beads modified with an anti-EpCAM antibody. Then, they were slowly introduced into the chip. MCF-7 cells bond to the magnetic beads in a ring-shaped pattern, while MDA-MB-231-RFP cells were washed away by PBS. Cell viability was examined during culturing in the micro-channel. The effects of TGF-β on MCF-7 cells were evaluated by migration distance and protein expression. The integrated method presented here is novel, low-cost and easy for performing cell isolation and migration assay. The method could be beneficial for developing microfluidic device applications for cancer metastasis research and could provide a new method for biological experimentation.
肿瘤细胞迁移对肿瘤转移有重要影响。磁操控是一种用于指导和模式化细胞的新兴方法。在这里,设计了一种独特的微型化微流控芯片,将细胞分离和迁移分析集成在一起,用于分离和研究细胞迁移。该芯片由磁适配器、聚四氟乙烯(PDMS)微流控芯片和六个磁环组成。该设备用于从 MDA-MB-231-RFP 细胞中分离 MCF-7 细胞,并评估 TGF-β 对 MCF-7 细胞的影响。首先,将两种细胞类型与用抗-EpCAM 抗体修饰的磁珠混合,并缓慢引入芯片。MCF-7 细胞以环形模式与磁珠结合,而 MDA-MB-231-RFP 细胞则被 PBS 冲走。在微通道中培养时检查细胞活力。通过迁移距离和蛋白质表达评估 TGF-β 对 MCF-7 细胞的影响。这里提出的集成方法新颖、低成本且易于进行细胞分离和迁移分析。该方法有助于开发用于癌症转移研究的微流控装置应用,并为生物实验提供新方法。