Qinba State Key Laboratory of Biological Resources and Ecological Environment, 2011 QinLing-Bashan Mountains Bioresources Comprehensive Development C. I. C, Shaanxi Province Key Laboratory of Bioresources, College of Bioscience and Bioengineering, Shaanxi University of Technology, Hanzhong 723001, China.
Department of Chemical Technology, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand.
Molecules. 2023 Jan 6;28(2):604. doi: 10.3390/molecules28020604.
Globally, millions of people suffer from poor wound healing, which is associated with higher mortality rates and higher healthcare costs. There are several factors that can complicate the healing process of wounds, including inadequate conditions for cell migration, proliferation, and angiogenesis, microbial infections, and prolonged inflammatory responses. Current therapeutic methods have not yet been able to resolve several primary problems; therefore, their effectiveness is limited. As a result of their remarkable properties, bio-based materials have been demonstrated to have a significant impact on wound healing in recent years. In the wound microenvironment, bio-based materials can stimulate numerous cellular and molecular processes that may enhance healing by inhibiting the growth of pathogens, preventing inflammation, and stimulating angiogenesis, potentially converting a non-healing environment to an appropriately healing one. The aim of this present review article is to provide an overview of the mechanisms underlying wound healing and its pathophysiology. The development of bio-based nanomaterials for chronic diabetic wounds as well as novel methodologies for stimulating wound healing mechanisms are also discussed.
全球有数以百万计的人患有伤口愈合不良,这与更高的死亡率和更高的医疗保健成本有关。有几个因素可以使伤口的愈合过程复杂化,包括细胞迁移、增殖和血管生成的条件不足、微生物感染和炎症反应的持续时间延长。目前的治疗方法还没有能够解决几个主要问题;因此,它们的效果是有限的。由于其显著的特性,生物基材料近年来在伤口愈合方面的应用已经得到了证明。在伤口微环境中,生物基材料可以刺激许多细胞和分子过程,这些过程可能通过抑制病原体的生长、预防炎症和刺激血管生成来促进愈合,从而有可能将非愈合环境转化为适当的愈合环境。本文旨在综述伤口愈合及其病理生理学的相关机制。同时还讨论了用于治疗慢性糖尿病性伤口的生物基纳米材料的发展以及刺激伤口愈合机制的新方法。