期刊文献+

用于伤口敷料的纤维素基自愈水凝胶研究进展

Research Progress of Cellulose Based Self⁃healing Hydrogels for Wound Dressings
在线阅读 下载PDF
导出
摘要 纤维素链上有丰富的含氧基团,可与水分子形成氢键网络,有利于制备具有自愈能力的水凝胶,基于纤维素的自愈水凝胶具有生物相容性好和无毒性等适用于伤口敷料的优点。本文首先对纤维素基水凝胶的合成原理进行介绍;然后综述了纤维素基自愈水凝胶的愈合机制,即利用可逆非共价键作用(氢键、疏水相互、主客体相互作用等)及动态共价键(亚胺键、酰基腙键、二硫键等)赋予其自我修复能力。纤维素基自愈水凝胶在伤口敷料领域具有巨大的潜力,但仍面临一些挑战,未来的研究应致力于解决现有水凝胶机械性能低等挑战,并探索新的制备和应用方法。 The abundant oxygen⁃containing groups on the cellulose chain can form hydrogen bond networks with water molecules,which is conducive to the preparation of self⁃healing hydrogels.The self⁃healing hydrogels based on cellulose have the advantages of good biocompatibility and non⁃toxicity,which can be applied to wound dressings.In this paper,the synthesis principle of cellulose based hydrogels was first introduced,and then the healing mechanism of cellulose based self⁃healing hydrogels was reviewed.Reversible non⁃covalent bonds(hydrogen bonds,hydrophobic interactions,host⁃guest interactions,etc.)and dynamic covalent bonds(imine bonds,acylhydrazone bonds,disulfide bonds,etc.)were used to engender self⁃healing ability.Cellulose⁃based self⁃healing hydrogels have great potential in the field of wound dressings,but still face some challenges,and future research will focus on solving existing challenges of low mechanical properties and exploring new methods of preparation and application.
作者 张蕊 袁思月 朱铭 刘鹏涛 ZHANG Rui;YUAN Siyue;ZHU Ming;LIU Pengtao(College of Light Industry Science and Engineering,Tianjin University of Science and Technology,Tianjin Key Laboratory of Pulp and Paper,Tianjin 300457,China)
出处 《天津造纸》 2024年第3期1-7,共7页 Tianjin Paper Making
基金 国家重点研发计划资助项目(2022YFC2105503)。
关键词 纤维素 水凝胶 自愈合 伤口敷料 cellulose hydrogel self⁃healing wound dressing
作者简介 张蕊(2000-),硕士研究生;通信作者:刘鹏涛,副研究员,pengtaoliu@tust.edu.cn。
  • 相关文献

参考文献7

二级参考文献62

  • 1顾蓉(Gu R),朱育平(Zhu YP).凝胶化学(Chemical Gel).北京:化学工业出版社(Beijing:Chemical Industry Press),2005.1-12.
  • 2邹新禧(Zou XX).超强吸水剂(Superabsorbents).第二版(Second Edition)北京:化学工业出版社(Beijing:Chemical Industry Press),2002.36-635.
  • 3吴季怀(Wu JH),林建明(Lin JM),魏月琳(Wei YL)等.高吸水保水材料(Hjgh Water-absorbent material).北京:化学工业出版社(Beijing:Chemical Industry Press),2005.1-12.
  • 4Guven O, Sen M, Karadag E, et al. Radiat. Phys. Chem., 1999, 56:381-386.
  • 5李谦(LiQ) 李东辉(LiDH) 全寿益(QuanSY)等.辐射研究与辐射工艺学报,1984,2(2):12-16.
  • 6Molina M J, Gomez-Anton M R, Rivas B L, et al. J. Appl. Polym. Sci., 2001, 79(8): 1467-1475.
  • 7Salih B, Pekel N, Guven O. J. Appl. Polym. Sci., 2001, 82(2) : 446-453.
  • 8王建龙(Wang JL).生物固定化技术与水污染控制(Microbial Immobilization Techniques and Water Pollution Control).北京:科学出版社(Beijing:Sceince Press),2002.
  • 9Wang J L, Chen C. Biotechnol. Adv., 2006, 24:427-451.
  • 10Abd El-Rehim H A, Hegazy E A, El-Hag Ali A. React. Funct. Polym., 2000, 34:105-116.

共引文献57

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部