University of Belgrade, Faculty of Technology and Metallurgy, Karnegijeva 4, 11000 Belgrade, Serbia.
University of Belgrade, Institute of Molecular Genetics and Genetic Engineering, Vojvode Stepe 444a, 11000 Belgrade, Serbia.
Mar Drugs. 2023 Mar 13;21(3):177. doi: 10.3390/md21030177.
Alginate is a natural polymer of marine origin and, due to its exceptional properties, has great importance as an essential component for the preparation of hydrogels and scaffolds for biomedical applications. The design of biologically interactive hydrogels and scaffolds with advanced, expected and required properties are one of the key issues for successful outcomes in the healing of injured tissues. This review paper presents the multifunctional biomedical applications of alginate-based hydrogels and scaffolds in selected areas, highlighting the key effect of alginate and its influence on the essential properties of the selected biomedical applications. The first part covers scientific achievements for alginate in dermal tissue regeneration, drug delivery systems, cancer treatment, and antimicrobials. The second part is dedicated to our scientific results obtained for the research opus of hydrogel materials for scaffolds based on alginate in synergy with different materials (polymers and bioactive agents). Alginate has proved to be an exceptional polymer for combining with other naturally occurring and synthetic polymers, as well as loading bioactive therapeutic agents to achieve dermal, controlled drug delivery, cancer treatment, and antimicrobial purposes. Our research was based on combinations of alginate with gelatin, 2-hydroxyethyl methacrylate, apatite, graphene oxide and iron(III) oxide, as well as curcumin and resveratrol as bioactive agents. Important features of the prepared scaffolds, such as morphology, porosity, absorption capacity, hydrophilicity, mechanical properties, in vitro degradation, and in vitro and in vivo biocompatibility, have shown favorable properties for the aforementioned applications, and alginate has been an important link in achieving these properties. Alginate, as a component of these systems, proved to be an indispensable factor and played an excellent "role" in the optimal adjustment of the tested properties. This study provides valuable data and information for researchers and demonstrates the importance of the role of alginate as a biomaterial in the design of hydrogels and scaffolds that are powerful medical "tools" for biomedical applications.
藻酸盐是一种源自海洋的天然聚合物,由于其特殊的性质,作为水凝胶和生物医学应用支架制备的重要组成部分具有重要意义。设计具有先进、预期和所需特性的生物相互作用的水凝胶和支架是成功治愈受伤组织的关键问题之一。本文综述了基于藻酸盐的水凝胶和支架在选定领域的多功能生物医学应用,重点介绍了藻酸盐的关键作用及其对所选生物医学应用基本特性的影响。第一部分涵盖了藻酸盐在皮肤组织再生、药物输送系统、癌症治疗和抗菌剂方面的科学成果。第二部分专门介绍了我们在基于藻酸盐的水凝胶材料用于支架的研究成果,这些材料与不同的材料(聚合物和生物活性剂)协同作用。藻酸盐已被证明是一种特殊的聚合物,可与其他天然和合成聚合物结合,以及负载生物活性治疗剂,以实现皮肤、控制药物输送、癌症治疗和抗菌目的。我们的研究基于藻酸盐与明胶、2-羟乙基甲基丙烯酸酯、磷灰石、氧化石墨烯和氧化铁以及姜黄素和白藜芦醇等生物活性剂的组合。所制备的支架的重要特性,如形态、孔隙率、吸收能力、亲水性、机械性能、体外降解以及体外和体内生物相容性,已显示出对上述应用有利的特性,藻酸盐是实现这些特性的重要环节。作为这些系统的组成部分,藻酸盐已被证明是不可或缺的因素,并在优化测试特性方面发挥了出色的“作用”。本研究为研究人员提供了有价值的数据和信息,并证明了藻酸盐作为生物材料在设计水凝胶和支架中的重要作用,这些水凝胶和支架是生物医学应用的强大医疗“工具”。