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Micro-/Nano-structuring based on self-assembly of particles to improve surface functionality in biomedical applications

机译:基于颗粒的自组装的微/纳米结构,以改善生物医学应用中的表面功能

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Bio-related applications often require increase in surface area to activate chemical reaction, hydrophilic property and oxygen permeability to improve biocompatibility with living cells. This paper discusses a production method of such surface by applying self-assembly process. Water-based suspension that contains particles is spread on a substrate and then dried. Afterward self-assembly with increased surface area can be obtained. By modifying the surface with specific protein, sensitive biochemical detection of material became possible. The sensitivity can be improved further combining with optical elements. The assembled particles, typically silica of 1μm in diameter, can be used as an etching mask to engrave the substrate. The engraved profile was replicated to polymer materials to demonstrate its biocompatibility.
机译:生物相关的应用通常需要增加表面积以激活化学反应,亲水性和透氧性,以改善与活细胞的生物相容性。本文通过施加自组装过程讨论这种表面的生产方法。含有颗粒的水基悬浮液在基材上涂布,然后干燥。可以获得具有增加的表面积的后向自组装。通过用特异性蛋白质改变表面,可能的敏感生化检测成为可能。可以改善灵敏度,进一步与光学元件组合。组装颗粒通常直径为1μm的二氧化硅,可以用作蚀刻掩模以雕刻基板。雕刻型材被复制到聚合物材料,以证明其生物相容性。

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