Biological Sciences and Engineering, IIT Gandhinagar, Palaj, Gujarat 382355, India.
Chemical Engineering, Dr. Kiran C. Patel Centre for Sustainable Development, IIT Gandhinagar, Palaj, Gujarat 382355, India.
Int J Biol Macromol. 2024 May;266(Pt 2):131104. doi: 10.1016/j.ijbiomac.2024.131104. Epub 2024 Mar 24.
The growing relevance of sustainable materials has recently led to the exploration of naturally derived biopolymeric hydrogels as coating materials due to their biodegradability, biocompatibility, ease of fabrication and modification. Although many review articles exist on biopolymeric coatings, they mainly focus on a specific polysaccharide, protein biopolymer, or a particular application- biomedical engineering or food preservation. The current review first summarizes the commonly used polysaccharide and protein-based biopolymers like chitosan, alginate, carrageenan, pectin, cellulose, starch, pullulan, agarose and silk fibroin, gelatin, respectively, with a systematic description of the techniques widely used for physical coating on substrates. Then, broad applications of these biopolymeric coatings on various substrates in biomedical engineering- 3D scaffolds, biomedical implants, and nanoparticles are described in detail. It also entails the application of biopolymeric coatings for food preservation in the form of food packaging and edible coatings. A brief discussion on the newly discovered interest in exploring biopolymers for anticorrosive coating applications is also included. Finally, concluding remarks on the role of biopolymer microstructures in forming homogeneous coatings, prospective alternatives to the currently used biopolymers as coating material and the advent of computer-aided technologies to expedite experimental findings are presented.
可持续材料的相关性日益增加,最近由于其可生物降解性、生物相容性、易于制造和修饰,人们开始探索天然衍生的生物聚合物水凝胶作为涂层材料。虽然有许多关于生物聚合物涂层的综述文章,但它们主要集中在特定的多糖、蛋白质生物聚合物或特定的应用上——生物医学工程或食品保鲜。本综述首先总结了常用的多糖和蛋白质基生物聚合物,如壳聚糖、海藻酸盐、卡拉胶、果胶、纤维素、淀粉、普鲁兰、琼脂糖和丝素蛋白、明胶,系统地描述了广泛用于基质物理涂层的技术。然后,详细描述了这些生物聚合物涂层在生物医学工程中的各种基质上的广泛应用——3D 支架、生物医学植入物和纳米粒子。它还包括生物聚合物涂层在食品保鲜方面的应用,如食品包装和可食用涂层。还简要讨论了最近对探索生物聚合物在防腐蚀涂层应用中的新兴趣。最后,提出了生物聚合物微观结构在形成均匀涂层中的作用、作为涂层材料的当前生物聚合物的替代物以及加速实验结果的计算机辅助技术的前景等结论性意见。