Zheng Yunhuan, Wu Jianzhang, Shao Jianbo, Jin Qinghui, Zhao Jianlong
Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai 200050, China.
Sheng Wu Gong Cheng Xue Bao. 2009 May;25(5):779-85.
We developed a novel microfluidic cell chip, which enabled drug delivery, fluid control and cell co-culture. The device consisted of an array of 6x6 cell culture chambers, a drug gradient generator and fluidic control valves. Micro-dam structures of the chambers were able to trap cells while loading and drug gradient network generated drug gradient of 6 different concentrations. Also we applied hydraulic valves to control the microfluid and simulate the microenvironment of cells. We had investigated the viability of co-culturing cells in the chip and the ability for drug screening. This microfluidic cell chip has the potential in cell-based research of high throughput drug screening.
我们开发了一种新型微流控细胞芯片,它能够实现药物递送、流体控制和细胞共培养。该装置由一个6×6细胞培养室阵列、一个药物梯度发生器和流体控制阀组成。培养室的微坝结构能够在加载细胞时捕获细胞,药物梯度网络可产生6种不同浓度的药物梯度。此外,我们应用液压阀来控制微流体并模拟细胞的微环境。我们研究了芯片中共培养细胞的活力以及药物筛选能力。这种微流控细胞芯片在基于细胞的高通量药物筛选研究中具有潜力。