Liu Fang, Duan Guangcai, Yang Haiyan
Department of Epidemiology, School of Public Health, Zhengzhou University, Zhengzhou 450001, PR China.
Department of Epidemiology, School of Public Health, Zhengzhou University, Zhengzhou 450001, PR China.
Int J Biol Macromol. 2023 Apr 30;235:123787. doi: 10.1016/j.ijbiomac.2023.123787. Epub 2023 Feb 27.
Carrageenans are a group of biopolymers widely found in red seaweeds. Commercial carrageenans have been traditionally used as emulsifiers, stabilizers, and thickening and gelling agents in food products. Carrageenans are regarded as bioactive polysaccharides with disease-modifying and microbiota-modulating activities. Novel biomedical applications of carrageenans as biocompatible functional materials for fabricating hydrogels and nanostructures, including carbon dots, nanoparticles, and nanofibers, have been increasingly exploited. In this review, we describe the unique structural characteristics of carrageenans and their functional relevance. We summarize salient physicochemical features, including thixotropic and shear-thinning properties, of carrageenans. Recent results from clinical trials in which carrageenans were applied as both antiviral and antitumor agents and functional materials are discussed. We also highlight the most recent advances in the development of carrageenan-based targeted drug delivery systems with various pharmaceutical formulations. Promising applications of carrageenans as a bioink material for 3D printing in tissue engineering and regenerative medicine are systematically evaluated. We envisage some key hurdles and challenges in the commercialization of carrageenans as a versatile material for clinical practice. This comprehensive review of the intimate relationships among the structural features, unique rheological properties, and biofunctionality of carrageenans will provide novel insights into their biomedicine application potential.
角叉菜胶是一类广泛存在于红藻中的生物聚合物。传统上,商业角叉菜胶在食品中被用作乳化剂、稳定剂以及增稠和胶凝剂。角叉菜胶被视为具有疾病调节和微生物群调节活性的生物活性多糖。角叉菜胶作为用于制造水凝胶和纳米结构(包括碳点、纳米颗粒和纳米纤维)的生物相容性功能材料的新型生物医学应用已得到越来越多的开发。在这篇综述中,我们描述了角叉菜胶独特的结构特征及其功能相关性。我们总结了角叉菜胶的显著物理化学特性,包括触变性和剪切稀化特性。讨论了角叉菜胶作为抗病毒和抗肿瘤剂以及功能材料应用于临床试验的最新结果。我们还强调了基于角叉菜胶的具有各种药物制剂的靶向给药系统开发的最新进展。系统评估了角叉菜胶作为组织工程和再生医学中3D打印生物墨水材料的有前景的应用。我们设想了角叉菜胶作为临床实践通用材料商业化过程中的一些关键障碍和挑战。这篇对角叉菜胶的结构特征、独特流变学特性和生物功能之间密切关系的全面综述将为其生物医学应用潜力提供新的见解。