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Preparation and characterization of chitosan - collagen peptide/oxidized konjac glucomannan hydrogel

机译:壳聚糖 - 胶原蛋白肽/氧化Konjac葡萄糖甘胺水凝胶的制备与表征

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In this paper, the microbial transglutaminase (MTGase) was used as a catalyst to graft the collagen peptide (COP) molecules on the amino group of chitosan to obtain water-soluble chitosan-collagen peptide (CS-COP) derivatives. The preparation of composite hydrogel was via the Schiff-base reaction between the amino of CS-COP and the aldehyde of oxidized konjac glucomannan (OKGM). The hydrogels were characterized by various techniques including Fourier transform infrared spectroscopy (FT-IR) and scanning electron microscopy (SEM). The results of SEM showed that the hydrogel sample had a clear and stable three-dimensional network structure. Meanwhile, these effects of the addition of OKGM on gelation time, swelling behaviors, water evaporation rate and blood coagulation capacity were investigated. The shortest gelation time for hydrogels was 99.3 s. The hydrogels showed a good swelling ability and appropriate water retention capacity. The maximum swelling ratio of the hydrogel was 265%. Dynamic blood clotting test showed that the hydrogels materials had good blood coagulation capacity. Moreover, The biocompatibility of hydrogels was evaluated with NIH-3T3 cells by MIT method. The results indicated that the hydrogels exhibited better biocompatibility. Therefore, this hydrogel has a promising potential to be applied as wound dressing. (C) 2017 Published by Elsevier B.V.
机译:本文使用微生物转谷氨酰胺酶(MTGase)作为移植物移植的催化剂,以在壳聚糖的氨基上移植胶原肽(COP)分子,得到水溶性壳聚糖胶原蛋白肽(CS-COP)衍生物。复合水凝胶的制备是通过CS-COP氨基和氧化康奈曼葡糖胺(OKGM)的醛基之间的Schiff-碱基反应。通过包括傅里叶变换红外光谱(FT-IR)和扫描电子显微镜(SEM)的各种技术以各种技术为特征在于,所述水凝胶表征。 SEM的结果表明,水凝胶样品具有清晰稳定的三维网络结构。同时,研究了这些疗法对凝胶时间,肿胀行为,水蒸发速率和血液凝固能力的影响。水凝胶的最短凝胶化时间为99.3秒。水凝胶显示出良好的膨胀能力和适当的水保持能力。水凝胶的最大溶胀比为265%。动态血液凝血试验表明,水凝胶材料具有良好的血液凝固能力。此外,通过MIT方法用NIH-3T3细胞评价水凝胶的生物相容性。结果表明,水凝胶表现出更好的生物相容性。因此,该水凝胶具有有希望的潜力作为伤口敷料。 (c)2017年由Elsevier B.V发布。

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