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Microfabrication of High-Resolution Porous Membranes for Cell Culture

机译:用于细胞培养的高分辨率多孔膜的微细加工

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摘要

Microporous membranes are widely utilized in cell biology to study cell-cell signaling and cell migration. However, the thickness and low porosity of commercial track-etched membranes limit the quality of cell imaging and the degree of cell-cell contact that can be achieved on such devices. We employ photolithography-based microfabrication to achieve porous membranes with pore diameter as small as 0.9 μm, up to 40% porosity, and less than 5% variation in pore size. Through the use of a soap release layer, membranes as thin as 1 μm can be achieved. The thin membranes minimally disrupt contrast enhancement optics, thus allowing good quality imaging of unlabeled cells under white light, unlike commercial membranes. In addition, the polymer membrane materials display low autofluorescence even after patterning, facilitating high quality fluorescence microscopy. Finally, confocal imaging suggests that substantial cell-cell contact is possible through the pores of these thin membranes. This membrane technology can enhance existing uses of porous membranes in cell biology as well as enable new types of experiments.
机译:微孔膜广泛用于细胞生物学中,以研究细胞信号传导和细胞迁移。然而,商业轨迹蚀刻膜的厚度和低孔隙率限制了细胞成像的质量以及在此类装置上可以实现的细胞与细胞的接触程度。我们采用基于光刻的微细加工技术来制造孔径小至0.9μm,孔隙率高达40%,孔径变化小于5%的多孔膜。通过使用肥皂释放层,可以实现薄至1μm的膜。与市售膜不同,该薄膜最小程度地破坏了对比度增强光学器件,因此可以在白光下对未标记细胞进行高质量成像。另外,即使在图案化之后,聚合物膜材料也显示出低的自发荧光,从而有助于高质量的荧光显微镜检查。最后,共聚焦成像表明通过这些薄膜的孔可能会发生大量的细胞接触。这种膜技术可以增强多孔膜在细胞生物学中的现有用途,并可以进行新型实验。

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