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Rapid Fabrication of Membrane-Integrated Thermoplastic Elastomer Microfluidic Devices

机译:快速制备膜整体热塑性弹性体微流体装置

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摘要

Leveraging the advantageous material properties of recently developed soft thermoplastic elastomer materials, this work presents the facile and rapid fabrication of composite membrane-integrated microfluidic devices consisting of Flexdym polymer and commercially available porous polycarbonate membranes. The three-layer devices can be fabricated in under 2.5 h, consisting of a 2-min hot embossing cycle, conformal contact between device layers and a low-temperature baking step. The strength of the Flexdym -polycarbonate seal was characterized using a specialized microfluidic delamination device and an automated pressure controller configuration, offering a standardized and high-throughput method of microfluidic burst testing. Given a minimum bonding distance of 200 μm, the materials showed bonding that reliably withstood pressures of 500 mbar and above, which is sufficient for most microfluidic cell culture applications. Bonding was also stable when subjected to long term pressurization (10 h) and repeated use (10,000 pressure cycles). Cell culture trials confirmed good cell adhesion and sustained culture of human dermal fibroblasts on a polycarbonate membrane inside the device channels over the course of one week. In comparison to existing porous membrane-based microfluidic platforms of this configuration, most often made of polydimethylsiloxane (PDMS), these devices offer a streamlined fabrication methodology with materials having favourable properties for cell culture applications and the potential for implementation in barrier model organ-on-chips.
机译:利用最近开发的软热塑性弹性体材料的有利材料特性,该工作介绍了由柔韧膜聚合物和市售多孔聚碳酸酯膜组成的复合膜整体微流体装置的容易和快速的制造。三层装置可以在2.5小时内制造,由2分钟的热压花循环组成,装置层和低温烘烤步骤之间的共形接触。使用专用的微流体分层装置和自动压力控制器配置的柔韧醛碳酸盐密封的强度,提供了一种标准化和高通量的微流体突发测试方法。给定200μm的最小粘合距离,材料显示粘合,可可靠受500毫巴和上述的压力,这足以用于大多数微流体细胞培养应用。当受到长期加压(10小时)并反复使用(10,000个压循环)时,粘合也稳定。细胞培养试验在装置通道内的聚碳酸酯膜上证实了人类皮肤成纤维细胞的良好细胞粘附和持续培养在一周内的过程中。与该构型的现有多孔膜的微流体平台相比,最常由聚二甲基硅氧烷(PDMS)制成,这些装置提供了具有良好性能的细胞培养应用的物质的流线型制造方法,以及屏障模型器官的实施潜力-chips。

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