Yenepoya Research Center, Yenepoya (Deemed to be University), Deralakatte, Mangalore, Karnataka, 575018, India.
Department of Dentistry, Hamad Medical Corporation, PO box 3050, Doha, Qatar.
Curr Pharm Des. 2019;25(11):1200-1209. doi: 10.2174/1381612825666190425161630.
Utilization of macroalgae has gained much attention in the field of pharmaceuticals, nutraceuticals, food and bioenergy. Macroalgae has been widely consumed in Asian countries as food from ancient days and proved that it has potential bioactive compounds which are responsible for its nutritional properties. Macroalgae consists of a diverse range of bioactive compounds including proteins, lipids, pigments, polysaccharides, etc. Polysaccharides from macroalgae have been utilized in food industries as gelling agents and drug excipients in the pharmaceutical industries owing to their biocompatibility and gel forming properties. Exploration of macroalgae derived sulfated polysaccharides in biomedical applications is increasing recently.
In the current review, we have provided information of three different sulfated polysaccharides such as carrageenan, fucoidan and ulvan and their isolation procedure (enzymatic precipitation, microwave assisted method, and enzymatic hydrolysis method), structural details, and their biomedical applications exclusively for bone tissue repair and regeneration.
From the scientific results on sulfated polysaccharides from macroalgae, we conclude that sulfated polysaccharides have exceptional properties in terms of hydrogel-forming ability, scaffold formation, and mimicking the extracellular matrix, increasing alkaline phosphatase activity, enhancement of biomineralization ability and stem cell differentiation for bone tissue regeneration.
Overall, sulfated polysaccharides from macroalgae may be promising biomaterials in bone tissue repair and regeneration.
海藻在药物、营养保健品、食品和生物能源领域的应用受到了广泛关注。自古以来,海藻就被亚洲国家广泛用作食品,事实证明它含有潜在的生物活性化合物,这些化合物是其营养价值的来源。海藻包含多种生物活性化合物,包括蛋白质、脂质、色素、多糖等。由于海藻多糖具有生物相容性和形成凝胶的特性,因此已被用于食品工业中的胶凝剂和药物赋形剂,以及制药工业中。最近,人们对源自海藻的硫酸化多糖在生物医学应用中的探索也在增加。
在本综述中,我们提供了三种不同的硫酸化多糖(卡拉胶、褐藻糖胶和岩藻聚糖)的信息,包括它们的分离程序(酶沉淀法、微波辅助法和酶水解法)、结构细节以及它们在骨组织修复和再生方面的独特应用。
从海藻硫酸化多糖的科学研究结果来看,我们得出结论,硫酸化多糖在水凝胶形成能力、支架形成和模拟细胞外基质、提高碱性磷酸酶活性、增强生物矿化能力和促进干细胞分化方面具有优异的特性,从而促进骨组织再生。
总的来说,海藻硫酸化多糖可能是骨组织修复和再生有前途的生物材料。