Zhao Puxiang, Feng Yue, Zhou Youquan, Tan Cuiying, Liu Mingxian
Department of Materials Science and Engineering, Jinan University, Guangzhou, 510632, China.
Engineering Research Center of Artificial Organs and Materials, Ministry of Education, Guangzhou, 510632, China.
Bioact Mater. 2022 Jun 14;20:355-367. doi: 10.1016/j.bioactmat.2022.05.035. eCollection 2023 Feb.
Infection and healing of wounds after injury has always been an unavoidable problem in daily life, so design of a biomaterial with antibacterial and good wound healing properties is highly needed. Herein, a wound healing hydrogel dressing with halloysite clay and chitin as the main components was prepared, which combines the advantages of the biomacromolecule and clay. Halloysite nanotubes (HNTs) are extremely biocompatible clay materials with a hollow tubular structure, and the inner and outer surfaces of HNTs are composed of SiOx and AlOx layers with different charges. Au nanoparticles with diameter in 5-10 nm were filled into the HNTs' lumen to endow photothermal effect of the clay materials. Au@HNTs was then mixed with chitin solution to prepare flexible composite hydrogel by crosslinking by epichlorohydrin. The antibacterial properties, biocompatibility and hemostatic properties of the hydrogel material were investigated by antibacterial experiments, cell experiments, mouse liver and tail hemostatic experiments. After infecting the back wound of mice with Staphylococcus aureus, the hydrogel was applied to the wound to further verify the killing effect on bacteria and wound healing effect of the hydrogel material in vivo. The Au@HNTs-chitin composite hydrogel exhibits high antibacterial and hemostatic activity as well as promoting wound healing function with low cytotoxicity. This study is significant for the development of high-performance wound dressings based on two commonly used biocompatible materials, which shows promising application in wound sterilization and healing.
受伤后伤口的感染与愈合一直是日常生活中不可避免的问题,因此迫切需要设计一种具有抗菌和良好伤口愈合性能的生物材料。在此,制备了一种以埃洛石粘土和甲壳素为主要成分的伤口愈合水凝胶敷料,它结合了生物大分子和粘土的优点。埃洛石纳米管(HNTs)是具有中空管状结构的极具生物相容性的粘土材料,HNTs的内表面和外表面由带不同电荷的SiOx和AlOx层组成。将直径为5-10nm的金纳米颗粒填充到HNTs的管腔中,赋予粘土材料光热效应。然后将Au@HNTs与甲壳素溶液混合,通过环氧氯丙烷交联制备柔性复合水凝胶。通过抗菌实验、细胞实验、小鼠肝脏和尾部止血实验研究了水凝胶材料的抗菌性能、生物相容性和止血性能。用金黄色葡萄球菌感染小鼠背部伤口后,将水凝胶应用于伤口,以进一步验证水凝胶材料在体内对细菌的杀灭作用和伤口愈合效果。Au@HNTs-甲壳素复合水凝胶具有高抗菌和止血活性以及促进伤口愈合的功能,且细胞毒性低。本研究对于基于两种常用生物相容性材料开发高性能伤口敷料具有重要意义,在伤口消毒和愈合方面显示出广阔的应用前景。