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创新型多功能丝素蛋白与水滑石纳米复合材料:各组分的协同效应

Innovative multifunctional silk fibroin and hydrotalcite nanocomposites: a synergic effect of the components.

作者信息

Posati Tamara, Benfenati Valentina, Sagnella Anna, Pistone Assunta, Nocchetti Morena, Donnadio Anna, Ruani Giampiero, Zamboni Roberto, Muccini Michele

机构信息

Laboratory MIST E-R , Via P. Gobetti 101, I-40129 Bologna, Italy.

出版信息

Biomacromolecules. 2014 Jan 13;15(1):158-68. doi: 10.1021/bm401433b. Epub 2013 Dec 17.

Abstract

Novel hybrid functional materials are formed by combining hydrotalcite-like compounds and silk fibroin (SF-HTlc) via an environmental friendly aqueous process. The nanocomposites can be prepared with different weight ratio of the constituting components and preserve the conformational properties of the silk protein and the lamellar structure of hydrotalcites. Optical microscopy, scanning electron microscopy, and atomic force microscopy analyses show a good dispersion degree of the inorganic nanoparticles into the organic silk matrix. A mutual benefit on the stability of both organic and inorganic components was observed in the nanocomposites. SF-HTlc displayed limited dissolution of hydrotalcite in acidic medium, enhanced mechanical properties, and higher protease resistance of silk protein. The transparency, flexibility, and acidic environment resistance of silk fibroin combined to the protective and reinforcing properties of hydrotalcites generate a hybrid material, which is very attractive for applications in recently reported silk based opto-electronic and photonics technologies.

摘要

新型杂化功能材料是通过一种环境友好的水相工艺将类水滑石化合物与丝素蛋白(SF-HTlc)结合而成。可以制备出具有不同组成成分重量比的纳米复合材料,并且保留丝蛋白的构象性质和水滑石的层状结构。光学显微镜、扫描电子显微镜和原子力显微镜分析表明,无机纳米颗粒在有机丝素基质中具有良好的分散度。在纳米复合材料中观察到有机和无机成分的稳定性都得到了互利提升。SF-HTlc在酸性介质中显示出有限的水滑石溶解,增强了机械性能,并且提高了丝蛋白的蛋白酶抗性。丝素蛋白的透明度、柔韧性和耐酸性环境特性与水滑石的保护和增强特性相结合,产生了一种杂化材料,这对于最近报道的基于丝绸的光电和光子技术应用非常有吸引力。

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