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Monolithic fabrication of three-dimensional microfluidic networks for constructing cell culture array with an integrated combinatorial mixer

机译:三维微流控网络的整体制造,用于使用集成组合混合器构建细胞培养阵列

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摘要

We present a novel method to monolithically fabricate three-dimensional (3-D) microfluidic networks and based on this fabrication technology, we have constructed the first cell culture device with an integrated combinatorial mixer. The device is designed for screening the combinatorial effects of multiple compound exposure on cultured cells, and a 1 cm × 1 cm proof-of-concept chip having a three-input combinatorial mixer and eight individually isolated micro culture-chambers has been fabricated. The 3-D microfluidic networks are fabricated utilizing the surface micromachining of parylene C (poly(chloro-p-xylylene)), and the monolithic method enables the device to achieve precise alignment in between microchannels and favorably obviates multilayer bonding processes. By incorporating several microfluidic "overpass" structures to allow one microfluidic channel to cross over other microfluidic channels, the combinatorial mixer is able to simultaneously generate all the combinations of the input fluidic streams for output to the microchambers. Cell culturing inside parylene C micro culture-chambers has been successfully performed, and the ability to simultaneously treat arrays of cells with different combinations of compounds has been demonstrated with experiments using three different cell stains. Our scaleable process can enable the fabrication of devices with a high-input combinatorial mixer with applications not only for high-throughput cell-based assays but also for conducting researches in combinatorial chemistry or the pharmaceutical industry. At the same time, the fabrication technique will have general applicability for building complex 3-D microfluidic devices, which can broaden the applications for current lab-on-a-chip systems.
机译:我们提出了一种新颖的方法来整体制造三维(3-D)微流体网络,并基于此制造技术,我们构造了具有集成组合搅拌器的第一台细胞培养装置。该设备设计用于筛选多种化合物暴露在培养细胞上的组合效应,并且已制造出具有三输入组合混合器和八个单独隔离的微培养腔的1 cm×1 cm概念验证芯片。 3-D微流体网络是利用聚对二甲苯C(聚(氯-对-二甲苯基))的表面微加工制造的,单片方法使该器件能够在微通道之间实现精确对准,并有利地避免了多层键合过程。通过合并几个微流体“立交桥”结构以允许一个微流体通道跨越其他微流体通道,组合混合器能够同时生成输入流体流的所有组合,以输出到微腔。已经成功地在聚对二甲苯C微培养室内进行了细胞培养,并且使用三种不同的细胞染色剂进行的实验证明了用化合物的不同组合同时处理细胞阵列的能力。我们可扩展的过程可以使制造商使用高输入组合混频器制造设备,这些设备不仅适用于基于细胞的高通量分析,还可以用于组合化学或制药行业的研究。同时,该制造技术将对构建复杂的3-D微流控设备具有普遍适用性,这可以拓宽当前芯片实验室系统的应用范围。

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