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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Modified nano microfibrillated cellulose/carboxymethyl chitosan composite hydrogel with giant network structure and quick gelation formability
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Modified nano microfibrillated cellulose/carboxymethyl chitosan composite hydrogel with giant network structure and quick gelation formability

机译:具有巨大网络结构的改性纳米微纤维纤维素/羧甲基壳聚糖复合水凝胶及快速凝胶化成形性

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摘要

Carboxymethyl chitosan (CMCS) has good biocompatibility, biodegradability and water solubility. This work investigated a nanocellulose fibrils reinforced CMCS composite hydrogel with giant network structure and quick gelation formability. The microfibrillated cellulose (MFC) with diameter in nano scale and length in sub micron scale was obtained through high-pressure homogenization. The hydroxyl groups on the MFC nanofibrils surface were partly oxidized into aldehyde groups. The dialdehyde MFC (DAMFC), remaining the fibril morphology and fine three-dimensional network structure, was mixed with CMCS. Due to the Schiff-base reaction between the aldehyde groups on DAMFC surface and amino groups on CMCS chains, a giant network was formed in DAMFC/CMCS. As a result, CMCS composite hydrogel could be formed in short time, although pure CMCS could not form hydrogel. In the composite, DAMFC acted as a reinforcing agent as well as a macroscopical crosslinking agent. The structure and properties of the composite hydrogels were investigated. The compression strength and the work of fracture of the hydrogel was increased dramatically as the DAMFC content increasing from 5 to 15 wt%, an increase of 330% and 338%, respectively. SEM images of the hydrogel showed a fine three-dimensional porous structure, which may provide a promising platform for tissue engineering scaffold. (C) 2019 Elsevier B.V. All tights reserved.
机译:羧甲基壳聚糖(CMCs)具有良好的生物相容性,生物降解性和水溶性。该工作研究了纳米纤维纤维纤维增强CMCS复合水凝胶,具有巨大的网络结构和快速凝胶化成形性。通过高压均质化获得具有直径的微纤化纤维素(MFC)和亚微米级长度的长度。将MFC纳米纤维表面上的羟基部分氧化成醛基。司醛MFC(DAMFC),剩余的原纤维形态和精细的三维网络结构与CMC混合。由于DAMFC表面和CMC链上的氨基之间的醛基之间的SCHIFF基础反应,在DAMFC / CMC中形成了巨大网络。结果,尽管纯CMC不能形成水凝胶,但可以在短时间内形成CMCS复合水凝胶。在复合材料中,DAMFC作用为增强剂以及宏观交联剂。研究了复合水凝胶的结构和性质。水凝胶的压缩强度和骨折的工作显着增加,因为DAMFC含量从5%增加到15wt%,分别增加330%和338%。水凝胶的SEM图像显示出精细的三维多孔结构,其可以为组织工程支架提供有希望的平台。 (c)2019年Elsevier B.V.保留所有紧身裤。

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