College of Ocean Food and Biological Engineering, Jimei University, Xiamen 361021, China.
National R&D Center for Red Alga Processing Technology, Xiamen 361021, China.
Mar Drugs. 2023 May 14;21(5):299. doi: 10.3390/md21050299.
Numerous compounds present in the ocean are contributing to the development of the biomedical field. Agarose, a polysaccharide derived from marine red algae, plays a vital role in biomedical applications because of its reversible temperature-sensitive gelling behavior, excellent mechanical properties, and high biological activity. Natural agarose hydrogel has a single structural composition that prevents it from adapting to complex biological environments. Therefore, agarose can be developed into different forms through physical, biological, and chemical modifications, enabling it to perform optimally in different environments. Agarose biomaterials are being increasingly used for isolation, purification, drug delivery, and tissue engineering, but most are still far from clinical approval. This review classifies and discusses the preparation, modification, and biomedical applications of agarose, focusing on its applications in isolation and purification, wound dressings, drug delivery, tissue engineering, and 3D printing. In addition, it attempts to address the opportunities and challenges associated with the future development of agarose-based biomaterials in the biomedical field. It should help to rationalize the selection of the most suitable functionalized agarose hydrogels for specific applications in the biomedical industry.
海洋中存在的许多化合物正在为生物医学领域的发展做出贡献。琼脂糖是一种从海洋红藻中提取的多糖,由于其可逆的温度敏感胶凝行为、优异的机械性能和高生物活性,在生物医学应用中起着至关重要的作用。天然琼脂糖水凝胶具有单一的结构组成,这使得它无法适应复杂的生物环境。因此,琼脂糖可以通过物理、生物和化学修饰来开发成不同的形式,使其在不同的环境中能够发挥最佳性能。琼脂糖生物材料越来越多地用于分离、纯化、药物输送和组织工程,但大多数仍远未获得临床批准。本综述对琼脂糖的制备、修饰和生物医学应用进行了分类和讨论,重点介绍了其在分离和纯化、伤口敷料、药物输送、组织工程和 3D 打印方面的应用。此外,它还试图解决与未来琼脂糖基生物材料在生物医学领域发展相关的机遇和挑战。它应该有助于合理选择最适合特定生物医学工业应用的功能化琼脂糖水凝胶。