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Micro- and nanometer-scale patterned surface in a microchannel for cell culture in microfluidic devices

机译:微通道中用于细胞培养的微通道中的微米和纳米级图案化表面

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摘要

A novel microdevice which had a micro- and nanometer-scale patterned surface for cell adhesion in a microchip was developed. The surface had a metal pattern fabricated by electron-beam lithography and metal sputtering and a chemical pattern consisting of a self-assembled monolayer of alkanethiol. The metal patterned surface had a gold stripe pattern which was as small as 300 nm wide and 150 nm high and both topography and chemical properties could be controlled. Mouse fibroblast NIH/3T3 cells were cultured on the patterned surface and elongated along the gold stripes. These cells recognized the size of the pattern and the chemical properties on the pattern though it was much smaller than they were. There was satisfactory cell growth under fresh medium flow in the microchip. The combination of the patterned surface and the microchip provides cells with a novel environment for their growth and will facilitate many cellular experiments.
机译:开发了一种新颖的微器件,该器件具有用于微芯片中细胞粘附的微米和纳米级图案化表面。该表面具有通过电子束光刻和金属溅射制成的金属图案以及由烷硫醇的自组装单层组成的化学图案。金属图案化的表面具有金条纹图案,其小至300 nm宽,150 nm高,并且可以控制形貌和化学性质。将小鼠成纤维细胞NIH / 3T3细胞培养在带图案的表面上,并沿着金条拉长。这些细胞识别出图案的大小和图案上的化学性质,尽管比它们小得多。在微芯片中新鲜的培养基流下有令人满意的细胞生长。图案化的表面和微芯片的结合为细胞的生长提供了新的环境,并将促进许多细胞实验。

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