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Polymeric nanofiber web-based artificial renal microfluidic chip

机译:基于聚合物纳米纤维网的人工肾微流控芯片

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摘要

In this paper, we present a new method for the creation of a smaller dialyzer and do so by incorporating polymeric nanofiber web, which is known to have good filtration efficiency for broad particle sizes, into a poly (dimethylsiloxane)-based microplatform. We have developed a process that makes possible the efficient production of polyethersulfone and polyurethane nanofiber web and that, itself, incorporates an electrospinning method. We have combined the nanofiber web with the PDMS-based microfluidic platform to create a chip-based portable hemodialysis system. With the dialyzing chip, we evaluated the filtration capability of molecules in broad ranges of sizes and compared the filtration capability of nanofiber membranes with that of PES and polyvinylidene fluoride porous membranes (sheet type): we discovered that the nanofiber membranes have better filtration performance than the other membranes. Blood cells were not mechanically affected during their filtration and their transportation through the chip. In con-rnclusion, we have demonstrated the feasibility of chip-based hemodialysis, and we expect that our method suggested in this paper will be applied to the development of small lightweight dialyzers for the realization of portable hemodialysis systems.
机译:在本文中,我们介绍了一种用于创建较小透析器的新方法,该方法是通过将聚合物纳米纤维网并入基于聚(二甲基硅氧烷)的微平台中来实现的,该聚合物纳米纤维网对宽粒度具有良好的过滤效率。我们已经开发出一种方法,该方法使高效生产聚醚砜和聚氨酯纳米纤维网成为可能,并且该方法本身也包含静电纺丝方法。我们将纳米纤维网与基于PDMS的微流体平台相结合,创建了基于芯片的便携式血液透析系统。通过渗析芯片,我们评估了各种尺寸分子的过滤能力,并将纳米纤维膜与PES和聚偏二氟乙烯多孔膜(片状)的过滤能力进行了比较:我们发现纳米纤维膜的过滤性能优于其他膜。血细胞在过滤和通过芯片运输过程中不受机械影响。总之,我们已经证明了基于芯片的血液透析的可行性,并且我们希望本文提出的方法将被用于开发小型轻便透析器,以实现便携式血液透析系统。

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