Ji Yuexin, Song Wenliang, Xu Lin, Yu Deng-Guang, Annie Bligh Sim Wan
School of Materials Science and Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China.
Shanghai Engineering Technology Research Center for High-Performance Medical Device Materials, Shanghai 200093, China.
Biomolecules. 2022 Jun 7;12(6):794. doi: 10.3390/biom12060794.
The timely and effective control and repair of wound bleeding is a key research issue all over the world. From traditional compression hemostasis to a variety of new hemostatic methods, people have a more comprehensive understanding of the hemostatic mechanism and the structure and function of different types of wound dressings. Electrospun nanofibers stand out with nano size, high specific surface area, higher porosity, and a variety of complex structures. They are high-quality materials that can effectively promote wound hemostasis and wound healing because they can imitate the structural characteristics of the skin extracellular matrix (ECM) and support cell adhesion and angiogenesis. At the same time, combined with amino acid polymers with good biocompatibility not only has high compatibility with the human body but can also be combined with a variety of drugs to further improve the effect of wound hemostatic dressing. This paper summarizes the application of different amino acid electrospun wound dressings, analyzes the characteristics of different materials in preparation and application, and looks forward to the development of directions of poly(amino acid) electrospun dressings in hemostasis.
伤口出血的及时有效控制与修复是全球的关键研究问题。从传统的压迫止血到各种新型止血方法,人们对止血机制以及不同类型伤口敷料的结构与功能有了更全面的认识。电纺纳米纤维以其纳米尺寸、高比表面积、更高孔隙率和多种复杂结构脱颖而出。它们是能够有效促进伤口止血和伤口愈合的优质材料,因为它们可以模仿皮肤细胞外基质(ECM)的结构特征并支持细胞黏附和血管生成。同时,与具有良好生物相容性的氨基酸聚合物相结合,不仅与人体具有高相容性,还能与多种药物结合,进一步提高伤口止血敷料的效果。本文总结了不同氨基酸电纺伤口敷料的应用,分析了不同材料在制备和应用中的特点,并展望了聚(氨基酸)电纺敷料在止血方面的发展方向。