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Preparation of Silk Fibroin/Bacterial Cellulose Composite Films and Their Mechanical Properties

机译:丝素蛋白/细菌纤维素复合膜的制备及其力学性能

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摘要

We prepared composite films consisting of two biocompatible materials, bacterial cellulose and silk fibroin. Aqueous silk fibroin solution and bacterial cellulose excreted by Acetobacter xylinum were used to fabricate the composite films. It was verified by field emission scanning electron microscopy and X-ray diffraction that the two components were finely blended and that the silk fibroin was crystallized during the composition of the films. The silk fibroin penetrated well between the individual fibrils of the bacterial cellulose, while the water molecules inside the pellicular bacterial cellulose were evaporating. The composite films did not dissolve in water due to the crystallization of the silk fibroin in the composite films. We also observed the change in the mechanical properties of the composite films according to the water content. The composite films became more flexible and tougher when they were dipped in water, whereas they were very brittle in the dehydrated state.
机译:我们准备了由两种生物相容性材料(细菌纤维素和丝素蛋白)组成的复合膜。用木丝醋杆菌分泌的丝素蛋白水溶液和细菌纤维素制备复合膜。通过场发射扫描电子显微镜和X射线衍射证实,两种组分被精细地共混,并且丝素蛋白在膜的组成过程中结晶。丝素蛋白很好地渗透到细菌纤维素的各个原纤维之间,而防护性细菌纤维素内部的水分子正在蒸发。由于丝纤蛋白在复合膜中的结晶,复合膜不溶于水。我们还观察到了复合膜的机械性能随含水量的变化。当将复合膜浸入水中时,它们变得更加柔韧性和韧性,而在脱水状态下它们非常脆。

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