International Innovation Center for Forest Chemicals and Materials and Jiangsu Co-Innovation Center for Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, Nanjing 210037, China.
School of Chemical Engineering, Oklahoma State University, 420 Engineering North, Stillwater, OK 74078, United States.
Carbohydr Polym. 2022 Feb 15;278:118998. doi: 10.1016/j.carbpol.2021.118998. Epub 2021 Dec 9.
Architecting an appropriate platform for biomedical applications requires setting a balance between simplicity and complexity. Polysaccharides (PSAs) play essential roles in our life in food resources, structural materials, and energy storage capacitors. Moreover, the diversity and abundance of PSAs have made them an indispensable part of food ingredients and cosmetics. PSA-based hydrogels have been extensively reviewed in biomedical applications. These hydrogels can be designed in different forms to show optimum performance. For instance, electroactive PSA-based hydrogels respond under an electric stimulus. Such performance can be served in stimulus drug release and determining cell fate. This review classifies and discusses the structure, properties, and applications of the most important polysaccharide-based electroactive hydrogels (agarose, alginate, chitosan, cellulose, and dextran) in medicine, focusing on their usage in tissue engineering, flexible electronics, and drug delivery applications.
为生物医学应用构建合适的平台需要在简单性和复杂性之间取得平衡。多糖(PSAs)在我们的生活中在食品资源、结构材料和储能电容器中发挥着重要作用。此外,PSAs 的多样性和丰富性使它们成为食品成分和化妆品中不可或缺的一部分。基于 PSA 的水凝胶已在生物医学应用中得到广泛综述。这些水凝胶可以设计成不同的形式以显示最佳性能。例如,电活性 PSA 基水凝胶在电刺激下响应。这种性能可用于刺激药物释放和确定细胞命运。本综述分类并讨论了最重要的基于多糖的电活性水凝胶(琼脂糖、藻酸盐、壳聚糖、纤维素和葡聚糖)在医学中的结构、性质和应用,重点介绍它们在组织工程、柔性电子和药物输送应用中的用途。