化学固定化明胶层增强壳聚糖/海藻酸盐复合材料的生物医学性能

Roghayeh Haghjoo, A. Karkhaneh
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摘要

本课题通过化学固定化明胶聚合物,对含有多种比例的天然壳聚糖-海藻酸盐聚合物制成的薄膜进行表面改性。壳聚糖-海藻酸盐(C-A)溶液的质量比例分别为8:2,7:3和5:5。然后,将这些溶液制成复合薄膜,用作溶剂铸造。用戊二醛等交联试剂将明胶(G)固定在C-A膜上。考察了C-A比、明胶浓度、交联剂用量和固定化时间对实际固定化层的影响。采用扫描电镜(SEM)、红外光谱(FTIR)、差示扫描量热法(DSC)和Zeta电位对膜进行了表征。扫描电镜图像表明,固定在7:3和5:5的C-A的重量百分比比8:2,导致更一致的明胶层。FTIR立体成像,在改性膜上显示出amid峰的出现。DSC曲线显示,改性膜对玻璃透射温度(Tg)有抑制作用。同时,随着C-A膜上明胶层数的增加,Zeta电位降低。新开发的(C-A-G)复合膜通过简单而有效的固定方法可用于各种生物医学应用,如组织工程和伤口愈合。
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Enhanced Biomedical Properties of Chitosan/Alginate Composites by Chemical Immobilization of Gelatin layer on the surface
This project designed surface modification for films made from natural Chitosan-Alginate polymers containing multiple ratios via chemically immobilizing the gelatin polymer. Chitosan-Alginate (C-A) solutions were prepared in 8:2, 7:3 and 5:5 weight percentages. Afterwards, these solutions were used to make composite films to use as solvent casting. Gelatin (G) was immobilized onto C-A films using the crosslinking reagents, which included Glutaraldehyde. The effects of C-A ratio, gelatin concentration, amount of crosslinking agent and duration of immobilization process on the actual immobilized layer were investigated. The films were characterized by Scanning Electron Microscopy (SEM), Furrier Transformer Infrared Spectroscopy (FTIR), Differential Scanning Calorimetry (DSC) and Zeta Potential. SEM images demonstrated that immobilization onto 7:3 and 5:5 weight percentages ratios of C-A, resulted in a more consistent gelatin layer compared to 8:2. FTIR stereoscopy, which showed the appearance of amid peak in modified films. In DSC curves, suppression in Glass Transmission Temperature (Tg) in modified films was detected. Also, Zeta potential decreased as the amount of gelatin layer on C-A films was increased. The newly developed (C-A-G) Composite films by simple, yet effective method of immobilization can be used for various biomedical applications like tissue engineering and wound healing.
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