Collaborative Innovation Center of Advanced Drug Delivery System and Biotech Drugs, School of Pharmacy, Yantai University, Yantai, 264005, PR China.
Yantai Muping District Hospital of Traditional Chinese Medicine, No.505, Government Street, Muping District, Yantai, 264110, PR China.
Carbohydr Res. 2024 Apr;538:109071. doi: 10.1016/j.carres.2024.109071. Epub 2024 Mar 4.
The ocean is the common home of a large number of marine organisms, including plants, animals, and microorganisms. Researchers can extract thousands of important bioactive components from the oceans and use them extensively to treat and prevent diseases. In contrast, marine polysaccharide macromolecules such as alginate, carrageenan, Laminarin, fucoidan, chitosan, and hyaluronic acid have excellent physicochemical properties, good biocompatibility, and high bioactivity, which ensures their wide applications and strong therapeutic potentials in drug delivery. Drug delivery systems (DDS) based on marine polysaccharides and modified marine polysaccharide molecules have emerged as an innovative technology for controlling drug distribution on temporal, spatial, and dosage scales. They can detect and respond to external stimuli such as pH, temperature, and electric fields. These properties have led to their wide application in the design of novel drug delivery systems such as hydrogels, polymeric micelles, liposomes, microneedles, microspheres, etc. In addition, marine polysaccharide-based DDS not only have smart response properties but also can combine with the unique biological properties of the marine polysaccharide base to exert synergistic therapeutic effects. The biological activities of marine polysaccharides and the design of marine polysaccharide-based DDS are reviewed. Marine polysaccharide-based responsive DDS are expected to provide new strategies and solutions for disease treatment.
海洋是大量海洋生物的共同家园,包括植物、动物和微生物。研究人员可以从海洋中提取数千种重要的生物活性成分,并广泛用于治疗和预防疾病。相比之下,海藻酸盐、卡拉胶、褐藻糖胶、岩藻聚糖硫酸酯、壳聚糖和透明质酸等海洋多糖大分子具有优异的物理化学性质、良好的生物相容性和高生物活性,这确保了它们在药物输送中的广泛应用和强大的治疗潜力。基于海洋多糖和修饰海洋多糖分子的药物输送系统 (DDS) 已成为一种控制药物在时间、空间和剂量尺度上分布的创新技术。它们可以检测和响应 pH 值、温度和电场等外部刺激。这些特性导致它们在水凝胶、聚合物胶束、脂质体、微针、微球等新型药物输送系统的设计中得到广泛应用。此外,基于海洋多糖的 DDS 不仅具有智能响应特性,还可以与海洋多糖基质的独特生物学特性相结合,发挥协同治疗作用。本文综述了海洋多糖的生物学活性和基于海洋多糖的 DDS 的设计。基于海洋多糖的响应性 DDS 有望为疾病治疗提供新的策略和解决方案。