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Microfluidic devices with permeable polymer barriers for capture and transport of biomolecules and cells

机译:具有可渗透聚合物屏障的微流体装置,用于捕获和运输生物分子和细胞

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摘要

We report a method for fabricating permeable polymer microstructure barriers in polydimethylsiloxane (PDMS) microfluidic devices and the use of the devices to capture and transport DNA and cells. The polymer microstructure in a desired location in a fluidic channel is formed in situ by the polymerization of acrylamide and polyethylene diacrylate cross-linker (PEG-DA) monomer in a solution which is trapped in the location using a pair of PDMS valves. The porous polymer microstructure provides a mechanical barrier to convective fluid flow in the channel or between two microfluidic chambers while it still conducts ions or small charged species under an electric field, allowing for the rapid capture and transport of biomolecules and cells by electrophoresis. We have demonstrated the application of the devices for the rapid capture and efficient release of bacteriophage X genomic DNA, solution exchange and for the transport and capture of HeLa cells. Our devices will enable the multi-step processing of biomolecules and cells or individual cells within a single microfluidic chamber.
机译:我们报告了一种在聚二甲基硅氧烷(PDMS)微流体设备中制造可渗透聚合物微结构屏障的方法,以及该设备用于捕获和运输DNA和细胞的方法。流体通道中所需位置的聚合物微结构是通过丙烯酰胺和聚二丙烯酸乙二醇酯交联剂(PEG-DA)单体在溶液中的聚合而形成的,该溶液使用一对PDMS阀捕获在该位置。多孔聚合物微结构为通道内或两个微流体腔室之间的对流流体流动提供了机械屏障,同时它在电场下仍能传导离子或小的带电物种,从而允许通过电泳快速捕获和运输生物分子和细胞。我们已经证明了该设备在快速捕获和有效释放噬菌体X基因组DNA,溶液交换以及HeLa细胞运输和捕获中的应用。我们的设备将能够在单个微流体室内对生物分子和细胞或单个细胞进行多步处理。

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