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Morphology and thermal stability of bacterial cellulose collagen composites

机译:细菌纤维素胶原复合材料的形貌和热稳定性

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The aim of this paper was to prepare composites of bacterial cellulose (BC) and collagen to evaluate both the effect of collagen on the morphological, mechanical and thermal properties of BC and the effect of BC on the thermal stability of collagen for designing composites with increased potential biomedical applications. Two series of composites were prepared, the first series by immersing BC pellicle in solutions of collagen obtained in three forms, collagen gel (CG), collagen solution (CS) and hydrolysed collagen (HC), followed by freeze drying; and the second series of composites by mixing BC powder in solutions of collagen (CG, CS and HC), also followed by freeze drying. The properties of obtained composites were evaluated by Fourier transform infrared (FTIR) spectroscopy, thermogravimetric analysis (TGA), mechanical tests, scanning electron microscopy (SEM) and atomic force microscopy (AFM). The results revealed that BC acts as a thermal stabilizer for CS matrix, while with CG matrix it interacts synergistically leading to composites with improved properties. On the other hand, the BC sheet impregnated with collagen has a significantly improved thermal stability. Collagen (as HC, CS or CG) has also a positive influence on the mechanical properties of lyophilized BC sheet. A four times increase of modulus was observed in BC/HC and BC/CG composites. and an increase of 60 times for BC/CS. The spectacular increase of elastic modulus and tensile strength in the case of BC/CS composite was explained by the easier penetration of collagen solution in the BC network and impregnation of BC fibrils as revealed by SEM and AFM analyzes.
机译:本文的目的是制备细菌纤维素(BC)和胶原蛋白的复合材料,以评估胶原蛋白对BC的形态,机械和热性能的影响,以及BC对胶原蛋白的热稳定性的影响,以设计高密度复合材料。潜在的生物医学应用。制备两个系列的复合材料,第一个系列是将BC防护膜浸入以三种形式(胶原蛋白凝胶(CG),胶原蛋白溶液(CS)和水解胶原蛋白(HC))获得的胶原蛋白溶液中,然后冷冻干燥。第二系列复合材料是将BC粉混合在胶原蛋白(CG,CS和HC)溶液中,然后冷冻干燥。通过傅立叶变换红外(FTIR)光谱,热重分析(TGA),机械测试,扫描电子显微镜(SEM)和原子力显微镜(AFM)评估所得复合材料的性能。结果表明,BC充当CS基质的热稳定剂,而与CG基质协同作用,从而导致复合材料的性能得到改善。另一方面,用胶原蛋白浸渍的BC片材具有显着改善的热稳定性。胶原蛋白(如HC,CS或CG)对冻干BC片的机械性能也有积极影响。在BC / HC和BC / CG复合材料中,模量增加了四倍。而BC / CS则增加了60倍。 SEM / AFM分析显示,胶原蛋白溶液更容易渗透到BC网络中,并且BC纤维的浸渍,可以解释BC / CS复合材料的弹性模量和拉伸强度显着增加。

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