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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Micropatterning of biomedical polymer surfaces by novel UV polymerization techniques
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Micropatterning of biomedical polymer surfaces by novel UV polymerization techniques

机译:通过新型紫外线聚合技术对生物医学聚合物表面进行微图案化

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摘要

The "living" radical polymerization with an iniferter was used to create micropatterned biomedical surfaces. Novel, photosensitive biomedical polymers were created by the incorporation of dithiocarbamate groups from iniferters. A second monomer layer was then irradiated onto the photosensitive polymer substrate created with the iniferter to form a copolymer. Patterns were created on the films by application of modified microfabrication-based photolithographic techniques. The technique was used to create patterns with depths from 5 to 80 #mu#m. In addition, various polymers were incorporated, including polyethylene glycol methacrylates, styrene, and methacrylic acid, to synthesize regions with different physico-chemical properties. Applications include novel surfaces for biosensors and biomaterials for the selective adhesion of cells and proteins.
机译:使用具有引发剂的“活性”自由基聚合反应来创建微图案化的生物医学表面。新型的,光敏的生物医学聚合物是通过并入有发自发明者的二硫代氨基甲酸酯基团而产生的。然后将第二单体层辐照到由引发剂产生的光敏聚合物基底上以形成共聚物。通过应用基于微细加工的改进光刻技术,在胶片上创建了图案。该技术用于创建深度为5到80#mu#m的图案。另外,掺入了各种聚合物,包括聚乙二醇甲基丙烯酸酯,苯乙烯和甲基丙烯酸,以合成具有不同物理化学性质的区域。应用包括用于生物传感器和生物材料的新型表面,用于选择性粘附细胞和蛋白质。

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