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Manufacturing of substrates with different surface roughness for cell migration test by two-photon polymerization method

机译:通过双光子聚合方法制造具有不同表面粗糙度的底物粗糙度

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In this paper, cell substrates with different assigned surface roughness are manufactured by two-photon polymerization (TPP) method. The surface roughness of substrate can be controlled by changing the laser power, voxel distance, and scan line gap of the 3D printing process in TPP system. The micro substrate structure manufactured by TPP will be used as a master sample for reproducing multiple replica samples by nanoimprint lithography (NIL). In nanoimprint lithography, first a polypropylene (PP) thin sheet will be placed on the surface of the master sample to reproduce the image copy of the surface, called PP mold. Then polydimethylsiloxane (PDMS) will be poured on the PP mold to reproduce copies of the master sample, called PDMS mold. Finally the PDMS mold will be filled with liquid PP and the PP substrate will be separated from PDMS mold. The surface characteristics of TPP master samples and PP substrates are analyzed from 3D shapes measured by confocal microscope. It shows that surface roughness of PP substrates is quite similar to those of TPP master samples. TPP is a slow fabrication process. By using nanoimprint lithography to reproduce copies of the master sample, it solves the problem of TPP mass production. The final PP substrates with different surface roughness can be used in studying cell migration test.
机译:本文通过双光子聚合(TPP)方法制造具有不同分配的表面粗糙度的细胞基板。可以通过改变TPP系统中的3D打印过程的激光功率,体素距离和扫描线间隙来控制基板的表面粗糙度。通过TPP制造的微衬底结构将用作通过纳米视标(NIL)再现多个复制品样本的母样样本。在纳米压印光刻中,首先将聚丙烯(PP)薄片放置在主样品的表面上以再现表面的图像拷贝,称为PP模具。然后将聚二甲基硅氧烷(PDMS)倒入PP模具上以再现母样的副本,称为PDMS模具。最后,PDMS模具将填充液体PP,PP衬底将与PDMS模具分离。从共聚焦显微镜测量的3D形状分析了TPP主样品和PP基板的表面特征。它表明PP底物的表面粗糙度与TPP主样本的表面粗糙度非常相似。 TPP是一种缓慢的制造过程。通过使用纳米压印光刻再现母样的副本,它解决了TPP批量生产的问题。具有不同表面粗糙度的最终PP底物可用于研究细胞迁移测试。

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