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Size selective sampling using mobile, 3D nanoporous membranes

机译:使用移动的3D纳米多孔膜进行尺寸选择采样

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摘要

We describe the fabrication of 3D membranes with precisely patterned surface nanoporosity and their utilization in size selective sampling. The membranes were self-assembled as porous cubes from lithographically fabricated 2D templates (Leong et al., Langmuir 23:8747–8751, 2007) with face dimensions of 200 μm, volumes of 8 nL, and monodisperse pores ranging in size from approximately 10 μm to 100 nm. As opposed to conventional sampling and filtration schemes where fluid is moved across a static membrane, we demonstrate sampling by instead moving the 3D nanoporous membrane through the fluid. This new scheme allows for straightforward sampling in small volumes, with little to no loss. Membranes with five porous faces and one open face were moved through fluids to sample and retain nanoscale beads and cells based on pore size. Additionally, cells retained within the membranes were subsequently cultured and multiplied using standard cell culture protocols upon retrieval.
机译:我们描述了具有精确图案化的表面纳米多孔性的3D膜的制造及其在尺寸选择性采样中的利用。膜是用平版印刷的二维模板(Leong等人,Langmuir 23:8747–8751,2007)自组装成多孔立方体,其表面尺寸为200μm,体积为8 nL,单分散孔的大小约为10 μm至100 nm。与传统的采样和过滤方案不同,在传统的采样和过滤方案中,流体会流过静态膜,我们通过将3D纳米多孔膜移动通过流体来演示采样。这种新方案允许以小体积直接进行采样,而几乎没有损失。使具有五个多孔面和一个敞开面的膜通过流体移动,以根据孔径对纳米级珠子和细胞进行采样和保留。另外,保留在膜内的细胞随后被培养并在回收时使用标准细胞培养方案繁殖。

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