三维微流控组合细胞培养阵列

M. Liu, Y. Tai
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引用次数: 9

摘要

我们提出了一个三维(3-D),玻璃上组合细胞培养阵列芯片的特点是集成的三输入,八输出组合混合器和细胞培养室。该装置设计用于同时筛选多种化合物和浓度对培养细胞的影响。实验上,我们首先开发了一种精确的方法来表征每个腔室的组合化合物浓度谱。然后,我们通过在该设备上培养神经元细胞并筛选三种化学物质减轻细胞毒性过氧化氢引起的细胞死亡的能力,成功地证明了细胞测定的功能。基于相同的技术,组合混合器的输入和输出数量可以按比例增加,以构建人工芯片设备,用于执行高通量基于细胞的分析和高度平行和组合的化学或生化反应,减少人工,试剂和时间。
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A 3-D Microfluidic Combinatorial Cell Culture Array
We present the development of a three-dimensional (3-D), on-glass combinatorial cell culture array chip featured with integrated three-input, eight-output combinatorial mixers and cell culture chambers. The device is designed to simultaneously screen for the effects of multiple compounds and concentrations on cultured cells. Experimentally, we first developed a precise way to characterize the combined compound concentration profile at each chamber with a fluorescence method. We then successfully demonstrated the functionality of the cell assay by culturing neuron cells on this device and screening the ability of three chemicals to attenuate cell death caused by cytotoxic hydrogen peroxide. Based on the same technology, the number of inputs and outputs of the combinatorial mixer can be scaled-up to construct labon-chip devices for performing high-throughput cell-based assay and highly parallel and combinatorial chemical or biochemical reactions with reduced labors, reagents, and time.
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