A Monolithically Fabricated Combinatorial Mixer for Microchip-Based High-Throughput Cell Culturing Assays

M.C. Liu, D. Ho, Y. Tai
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引用次数: 1

Abstract

We present an integrated method to fabricate 3D microfluidic networks and fabricated the first on-chip cell culture device with an integrated combinatorial mixer. The combinatorial mixer is designed for screening the combinatorial effects of different compounds on cells. The monolithic fabrication method with parylene C as the basic structural material allows us to avoid wafer bonding and achieves precise alignment between microfluidic channels. As a proof-of-concept, we fabricated a device with a three-input combinatorial mixer and demonstrated that the mixer can produce all the possible combinations. Also, we demonstrated the ability to culture cells on-chip and performed a simple cell assay on-chip using trypan blue to stain dead cells.
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用于微芯片高通量细胞培养试验的单片制造组合混合器
我们提出了一种制造三维微流控网络的集成方法,并制造了第一个带有集成组合混合器的片上细胞培养装置。组合混合器用于筛选不同化合物对细胞的组合作用。以聚对二甲苯为基本结构材料的单片制造方法可以避免晶圆键合,实现微流控通道之间的精确对齐。作为概念验证,我们制作了一个带有三输入组合混频器的设备,并证明该混频器可以产生所有可能的组合。此外,我们展示了在芯片上培养细胞的能力,并在芯片上使用台锥蓝染色死细胞进行了简单的细胞试验。
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