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首页> 外文期刊>Journal of Materials Science >A versatile click-grafting approach to surface modification of silk fibroin films
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A versatile click-grafting approach to surface modification of silk fibroin films

机译:通用的单击接枝方法对丝心蛋白膜进行表面改性

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摘要

Silk fibroin is a biocompatible, mechanically robust protein polymer that can be made optically transparent, and is widely used and studied as biomaterial for different applications. Its chemical modification is a fascinating way for tuning the properties and widening its application field. Herein, PEG grafting on the surface of regenerated silk fibroin films is obtained by direct linking based on a click reaction between the azido activated silk surface and an alkyne terminated PEG. The so obtained PEGylated films exhibit modified surface properties in comparison with the unmodified films. Through the same click approach, we also show that arrays of ordered fluorescent spots are steadily printed onto the film surface. This expands the versatility of our silk modification to different molecules and polymers, hence allowing for the realization of new functional hybrid materials.
机译:丝素蛋白是一种生物相容性强,机械强度高的蛋白质聚合物,可以制成光学透明的,并被广泛用作各种用途的生物材料并进行了研究。其化学改性是调节性能和扩展其应用领域的一种引人入胜的方法。本文中,基于叠氮活化的丝表面和炔封端的PEG之间的点击反应,通过直接连接获得在再生的丝素蛋白膜表面上的PEG接枝。与未改性的膜相比,如此获得的PEG化膜表现出改性的表面性能。通过相同的单击方法,我们还显示出有序荧光点的阵列稳定地打印在薄膜表面上。这将我们的真丝修饰物的用途扩展到了不同的分子和聚合物,从而实现了新的功能杂化材料。

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