Department of Bioengineering, Division of Engineering and Applied Science, California Institute of Technology, 1200 E. California Blvd., MC 136-93, Pasadena, CA 91125, USA.
Biomed Microdevices. 2011 Feb;13(1):191-201. doi: 10.1007/s10544-010-9484-4.
We present the development of a three-dimensional (3-D) combinatorial cell culture array device featured with integrated three-input, eight-output combinatorial mixer and cell culture chambers. The device is designed for cell-based screening of multiple compounds simultaneously on a microfluidic platform. The final assembled device is composed of a porous membrane integrated in between a Parylene 3-D microfluidic chip and a PDMS microfluidic chip. The membrane turned the cell culture chambers into two-level configuration to facilitate cell loading and to maintain cells in a diffusion dominated space during device operation. Experimentally, we first characterized the combined compound concentration profile at each chamber using a fluorescence method. We then successfully demonstrated the functionality of the quantitative cell-based assay by culturing B35 rat neuronal cells on this device and screening the ability of three compounds (1,5-dihydroxyisoquinoline, deferoxamine, and 3-aminobenzoic acid) to attenuate cell death caused by cytotoxic hydrogen peroxide. In another experiment, we assayed for the combinatorial effects of three chemotherapeutic compound exposures (vinorelbine, paclitaxel, and γ-linolenic acid) on human breast cancer cells, MDA-MB-231. The same technology will enable the construction of inexpensive lab-on-a-chip devices with high-input combinatorial mixer for performing high-throughput cell-based assay and highly parallel and combinatorial chemical or biochemical reactions.
我们提出了一种三维(3-D)组合细胞培养阵列装置的开发,其特点是集成了三输入、八输出组合混合器和细胞培养室。该装置专为在微流控平台上同时对多种化合物进行基于细胞的筛选而设计。最终组装的装置由一个集成在 Parylene 3-D 微流控芯片和 PDMS 微流控芯片之间的多孔膜组成。该膜将细胞培养室变成了两级配置,便于细胞加载,并在装置运行过程中使细胞保持在扩散主导的空间中。在实验中,我们首先使用荧光法对每个腔室的组合化合物浓度分布进行了表征。然后,我们通过在该装置上培养 B35 大鼠神经元细胞并筛选三种化合物(1,5-二羟基异喹啉、去铁胺和 3-氨基苯甲酸)减轻细胞毒性过氧化氢引起的细胞死亡的能力,成功地证明了基于细胞的定量测定的功能。在另一个实验中,我们检测了三种化疗化合物暴露(长春瑞滨、紫杉醇和 γ-亚麻酸)对人乳腺癌细胞 MDA-MB-231 的组合效应。相同的技术将能够构建具有高输入组合混合器的廉价片上实验室设备,用于进行高通量基于细胞的测定以及高度平行和组合的化学或生化反应。