Institute of Health and Biomedical Innovation, Queensland University of Technology (QUT), Kelvin Grove, Brisbane, QLD, 4059, Australia.
Herston Biofabrication Institute, Metro North Hospital and Health Service, Brisbane, QLD, 4029, Australia.
Small. 2021 Oct;17(41):e2101384. doi: 10.1002/smll.202101384. Epub 2021 Jul 26.
Large skin wounds pose a major clinical challenge. Scarcity of donor site and postsurgical scarring contribute to the incomplete or partial loss of function and aesthetic concerns in skin wound patients. Currently, a wide variety of skin grafts are being applied in clinical settings. Scaffolds are used to overcome the issues related to the misaligned architecture of the repaired skin tissues. The current review summarizes the contribution of biomaterials to wound healing and skin regeneration and addresses the existing limitations in skin grafting. Then, the clinically approved biologic and synthetic skin substitutes are extensively reviewed. Next, the techniques for modification of skin grafts aiming for enhanced tissue regeneration are outlined, and a summary of different growth factor delivery systems using biomaterials is presented. Considering the significant progress in biomaterial science and manufacturing technologies, the idea of biomaterial-based skin grafts with the ability for scarless wound healing and reconstructing full skin organ is more achievable than ever.
大面积皮肤创伤是临床面临的重大挑战。供体部位的缺乏和术后瘢痕导致皮肤创伤患者的功能不完全或部分丧失,并引发对美观的担忧。目前,临床上应用了多种皮肤移植物。支架的应用可以克服修复皮肤组织结构不对齐的问题。本综述总结了生物材料在伤口愈合和皮肤再生中的作用,并讨论了皮肤移植中存在的局限性。然后,详细回顾了临床批准的生物和合成皮肤替代物。接下来,概述了旨在增强组织再生的皮肤移植物修饰技术,并介绍了使用生物材料的不同生长因子传递系统的总结。考虑到生物材料科学和制造技术的重大进展,具有无瘢痕愈合和重建完整皮肤器官能力的基于生物材料的皮肤移植物的想法比以往任何时候都更具实现可能性。