Tang Luying, Xiao Mengshi, Cai Shenyuan, Mou Haijin, Li Dongyu
College of Food Science and Engineering, Ocean University of China, No. 1299 Sansha Road, Qingdao 266003, China.
Foods. 2023 Jul 5;12(13):2600. doi: 10.3390/foods12132600.
Diabetes mellitus (DM) has become the world's third major disease after tumors and cardiovascular disease. With the exploitation of marine biological resources, the efficacy of using polysaccharides isolated from marine organisms in blood glucose regulation has received widespread attention. Some marine polysaccharides can reduce blood glucose by inhibiting digestive enzyme activity, eliminating insulin resistance, and regulating gut microbiota. These polysaccharides are mainly fucose-containing sulphated polysaccharides from algae and sea cucumbers. It follows that the hypoglycemic activity of marine fucosyl-polysaccharides is closely related to their structure, such as their sulfate group, monosaccharide composition, molecular weight and glycosidic bond type. However, the structure of marine fucosyl-polysaccharides and the mechanism of their hypoglycemic activity are not yet clear. Therefore, this review comprehensively covers the effects of marine fucosyl-polysaccharides sources, mechanisms and the structure-activity relationship on hypoglycemic activity. Moreover, the potential regulatory effects of fucosyl-polysaccharides on vascular complications caused by hyperglycemia are also summarized in this review. This review provides rationales for the activity study of marine fucosyl-polysaccharides and new insights into the high-value utilization of marine biological resources.
糖尿病(DM)已成为继肿瘤和心血管疾病之后的世界第三大主要疾病。随着海洋生物资源的开发利用,利用从海洋生物中分离出的多糖调节血糖的功效受到广泛关注。一些海洋多糖可以通过抑制消化酶活性、消除胰岛素抵抗和调节肠道微生物群来降低血糖。这些多糖主要是来自藻类和海参的含岩藻糖硫酸化多糖。由此可见,海洋岩藻糖基多糖的降血糖活性与其结构密切相关,如硫酸基团、单糖组成、分子量和糖苷键类型等。然而,海洋岩藻糖基多糖的结构及其降血糖活性机制尚不清楚。因此,本综述全面涵盖了海洋岩藻糖基多糖的来源、作用机制及其结构与活性关系对降血糖活性的影响。此外,本综述还总结了岩藻糖基多糖对高血糖引起的血管并发症的潜在调节作用。本综述为海洋岩藻糖基多糖的活性研究提供了理论依据,并为海洋生物资源的高值化利用提供了新的见解。