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首页> 外文期刊>Biomedical Microdevices >On chip porous polymer membranes for integration of gastrointestinal tract epithelium with microfiuidic 'body-on-a-chip' devices
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On chip porous polymer membranes for integration of gastrointestinal tract epithelium with microfiuidic 'body-on-a-chip' devices

机译:片上多孔聚合物膜,用于胃肠道上皮与微流体“片上体”装置的整合

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摘要

We describe a novel fabrication method that creates microporous, polymeric membranes that are either flat or contain controllable 3-dimensional shapes that, when populated with Caco-2 cells, mimic key aspects of the intestinal epithelium such as intestinal villi and tight junctions. The developed membranes can be integrated with microfluidic, multi-organ cell culture systems, providing access to both sides, apical and basolateral, of the 3D epithelial cell culture. Partial exposure of photoresist (SU-8) spun on silicon substrates creates flat membranes with micrometer-sized pores (0.5-4.0 (μm) that-supported by posts-span across 50 μm deep microfluidic chambers that are 8 mm wide and 10 long. To create three-dimensional shapes the membranes were air dried over silicon pillars with aspect ratios of up to 4:1. Space that provides access to the underside of the shaped membranes can be created by isotropically etching the sacrificial silicon pillars with xenon difluoride. Depending on the size of the supporting posts and the pore sizes the overall porosity of the membranes ranged from 4.4 % to 25.3 %. The microfabricated membranes can be used for integrating barrier tissues such as the gastrointestinal tract epithelium, the lung epithelium, or other barrier tissues with multi-organ "body-on-a-chip" devices.
机译:我们描述了一种新颖的制造方法,该方法可以创建扁平的微孔聚合物膜或包含可控3维形状的微孔膜,当填充Caco-2细胞时,可模拟肠上皮的关键方面,例如肠绒毛和紧密连接。可以将已开发的膜与微流体,多器官细胞培养系统整合在一起,从而可以接近3D上皮细胞培养的顶侧和底侧。旋转曝光在硅基底上的光致抗蚀剂(SU-8)会产生具有微米级孔(0.5-4.0(μm))的平膜,该孔由跨过50毫米深,8毫米宽,10长的深微流腔支撑。为了形成三维形状,将膜在高至4:1的硅柱上风干,可以通过用二氟化氙各向同性地蚀刻牺牲硅柱来创建可通往成形膜下侧的空间。在支撑柱的大小和孔径方面,膜的总孔隙率在4.4%至25.3%之间,微细膜可用于整合诸如胃肠道上皮,肺上皮或其他屏障组织的屏障组织与多器官“芯片上的身体”设备。

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