Department of Pharmaceutical Technology, Institute of Pharmacy, University of Innsbruck, Innrain 80/82, Innsbruck, 6020, Austria.
Department of Pharmaceutical Technology, Institute of Pharmacy, University of Innsbruck, Innrain 80/82, Innsbruck, 6020, Austria.
Biomaterials. 2025 Jan;312:122718. doi: 10.1016/j.biomaterials.2024.122718. Epub 2024 Jul 27.
Functional hydrogels are used for numerous biomedical applications such as tissue engineering, wound dressings, lubricants, contact lenses and advanced drug delivery systems. Most of them are based on synthetic or natural polymers forming a three-dimensional network that contains aqueous media. Among synthetic polymers, poly(meth)acrylates, polyethyleneglycols, poly(vinylalcohols), poly(vinylpyrrolidones), PLGA and poly(urethanes) are of high relevance, whereas natural polymers are mainly polysaccharides such as hyaluronic acid, alginate or chitosan and proteins such as albumin, collagen or elastin. In contrast to most synthetic polymers, natural polymers are biodegradable. Both synthetic and natural polymers are often chemically modified in order to improve or induce favorable properties and functions like high mechanical strength, stiffness, elasticity, high porosity, adhesive properties, in situ gelling properties, high water binding capacity or drug release controlling properties. Within this review we provide an overview about the broad spectrum of biomedical applications of functional hydrogels, summarize innovative approaches, discuss the concept of relevant functional hydrogels that are in clinical trials and highlight advanced products as examples for successful developments.
功能性水凝胶被广泛应用于生物医学领域,例如组织工程、创面敷料、润滑剂、隐形眼镜和先进的药物输送系统。它们大多基于合成或天然聚合物,形成包含水相的三维网络。在合成聚合物中,聚(甲基)丙烯酸酯、聚乙二醇、聚乙烯醇、聚乙烯吡咯烷酮、PLGA 和聚(尿烷)具有重要的应用价值,而天然聚合物主要是多糖,如透明质酸、海藻酸盐或壳聚糖,以及蛋白质,如白蛋白、胶原蛋白或弹性蛋白。与大多数合成聚合物相比,天然聚合物是可生物降解的。为了改善或诱导有利的性能和功能,如高机械强度、硬度、弹性、高孔隙率、粘附性能、原位凝胶形成性能、高水结合能力或药物释放控制性能,合成和天然聚合物经常被化学修饰。在这篇综述中,我们概述了功能性水凝胶在生物医学中的广泛应用,总结了创新方法,讨论了处于临床试验阶段的相关功能性水凝胶的概念,并强调了一些先进产品作为成功开发的范例。