Institute of Macromolecular Chemistry, Czech Academy of Sciences, Heyrovského Nám. 2, 162 00 Praha, Czech Republic.
Mar Drugs. 2023 Jul 27;21(8):426. doi: 10.3390/md21080426.
The marine-derived hyaluronic acid and other natural biopolymers offer exciting possibilities in the field of biomaterials, providing sustainable and biocompatible alternatives to synthetic materials. Their unique properties and abundance in marine sources make them valuable resources for various biomedical and industrial applications. Due to high biocompatible features and participation in biological processes related to tissue healing, hyaluronic acid has become widely used in tissue engineering applications, especially in the wound healing process. The present review enlightens marine hyaluronan biomaterial providing its sources, extraction process, structures, chemical modifications, biological properties, and biocidal applications, especially for wound healing/dressing purposes. Meanwhile, we point out the future development of wound healing/dressing based on hyaluronan and its composites and potential challenges.
海洋来源的透明质酸和其他天然生物聚合物在生物材料领域提供了令人兴奋的可能性,为合成材料提供了可持续和生物相容的替代品。它们在海洋资源中的独特性质和丰富度使它们成为各种生物医学和工业应用的有价值资源。由于具有高度的生物相容性特征,并参与与组织愈合相关的生物学过程,透明质酸已广泛应用于组织工程应用中,特别是在伤口愈合过程中。本综述阐述了海洋透明质酸生物材料,提供了其来源、提取过程、结构、化学修饰、生物特性和杀菌应用,特别是在伤口愈合/敷料方面的应用。同时,我们指出了基于透明质酸及其复合材料的伤口愈合/敷料的未来发展方向和潜在挑战。