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Using living radical polymerization to enable facile incorporation of materials in microfluidic cell culture devices

机译:使用活性自由基聚合以使材料易于掺入微流细胞培养装置中

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摘要

High throughput screening tools are expediting cell culture studies with applications in drug discovery and tissue engineering. This contribution demonstrates a method to incorporate 3D cell culture sites into microfluidic devices and enables the fabrication of high throughput screening tools with uniquely addressable culture environments. Contact lithographic photopolymerization (CLiPP) was used to fabricate microfluidic devices with two types of 3D culture sites: macroporous rigid polymer cell scaffolds and poly(ethylene glycol) (PEG) encapsulated cell matrices. Cells were cultured on-device with both types of culture sites, demonstrating material cytocompatibility. Multilayer microfluidic devices were fabricated with channels passing the top and bottom sides of a series of rigid porous polymer scaffolds. Cells were seeded and cultured on device, demonstrating the ability to deliver cells and culture cells on multiple scaffolds along the length of a single channel. Flow control through these rigid porous polymer scaffolds was demonstrated. Finally, devices were modified by grafting of PEG methacrylate from surfaces to prevent non-specific protein adsorption and ultimately cell adhesion to channel surfaces. The living radical component of this CLiPP device fabrication platform enables facile incorporation of 3D culture sites into microfluidic cell culture devices, which can be utilized for high throughput screening of cell-material interactions. (C) 2008 Elsevier Ltd. All rights reserved.
机译:高通量筛选工具正在加速细胞培养研究,并将其应用于药物发现和组织工程中。这项贡献展示了一种将3D细胞培养位点整合到微流体设备中的方法,并能够制造具有独特可寻址培养环境的高通量筛选工具。接触式光刻光聚合(CLiPP)用于制造具有两种3D培养部位的微流控设备:大孔刚性聚合物细胞支架和聚(乙二醇)(PEG)封装的细胞基质。用两种类型的培养位点在设备上培养细胞,证明了材料的细胞相容性。制造多层微流体装置,其通道穿过一系列刚性多孔聚合物支架的顶部和底部。将细胞播种并在装置上培养,展示了沿单个通道的长度在多个支架上递送细胞和培养细胞的能力。证明了通过这些刚性多孔聚合物支架的流量控制。最后,通过从表面接枝PEG甲基丙烯酸酯来修饰设备,以防止非特异性蛋白质吸附并最终防止细胞粘附至通道表面。该CLiPP设备制造平台的活性自由基成分可轻松将3D培养位点整合到微流体细胞培养设备中,从而可用于细胞材料相互作用的高通量筛选。 (C)2008 Elsevier Ltd.保留所有权利。

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