Liu Qin, Luo Shicui, Peng Junjie, Chang Renjie
School of Government, Yunnan University, Kunming, 650504, People's Republic of China.
Key Laboratory of Microcosmic Syndrome Differentiation, Yunnan University of Chinese Medicine, Kunming, 650500, People's Republic of China.
Int J Nanomedicine. 2024 Dec 27;19:13973-13990. doi: 10.2147/IJN.S501970. eCollection 2024.
Globally, wound care has become a significant burden on public health, with annual medical costs reaching billions of dollars, particularly for the long-term treatment of chronic wounds. Traditional treatments, such as gauze and bandages, often fail to provide an ideal healing environment due to their lack of effective biological activity. Consequently, researchers have increasingly focused on developing new dressings. Among these, electrospinning technology has garnered considerable attention for its ability to produce nano-scale fine fibers. This new type of dressing, with its unique physical and chemical properties-especially in enhancing breathability, increasing specific surface area, optimising porosity, and improving flexibility-demonstrates significant advantages in promoting wound healing, reducing the risk of infection, and improving overall healing outcomes. Additionally, the application of natural products from plants in electrospinning technology further enhances the effectiveness of dressings. These natural products not only exhibit good biocompatibility but are also rich in pharmacologically active ingredients, such as antibacterial, anti-inflammatory, and antioxidant compounds. They can serve as both the substrate for nanofibers and as bioactive components, effectively promoting cell proliferation and tissue regeneration, thereby accelerating wound healing and reducing the risk of complications. This article reviews the application of plant natural product nanofibers prepared by electrospinning technology in wound healing, focussing on the development and optimisation of these nanofibers, discussing the advantages and challenges of using plant natural products in this technology, and outlining future research directions and application prospects in this field.
在全球范围内,伤口护理已成为公共卫生的一项重大负担,每年的医疗费用高达数十亿美元,尤其是在慢性伤口的长期治疗方面。传统治疗方法,如纱布和绷带,由于缺乏有效的生物活性,往往无法提供理想的愈合环境。因此,研究人员越来越专注于开发新型敷料。其中,静电纺丝技术因其能够生产纳米级细纤维而备受关注。这种新型敷料具有独特的物理和化学性质,特别是在增强透气性、增加比表面积、优化孔隙率和提高柔韧性方面,在促进伤口愈合、降低感染风险和改善整体愈合效果方面显示出显著优势。此外,将植物来源的天然产物应用于静电纺丝技术进一步提高了敷料的有效性。这些天然产物不仅具有良好的生物相容性,而且富含药理活性成分,如抗菌、抗炎和抗氧化化合物。它们既可以作为纳米纤维的基质,又可以作为生物活性成分,有效地促进细胞增殖和组织再生,从而加速伤口愈合并降低并发症风险。本文综述了通过静电纺丝技术制备的植物天然产物纳米纤维在伤口愈合中的应用,重点关注这些纳米纤维的开发与优化,讨论在该技术中使用植物天然产物的优势和挑战,并概述该领域未来的研究方向和应用前景。