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Inhibition of Human Intestinal α-Glucosidases by Calystegines

机译:钙半胱氨酸抑制人肠道α-葡萄糖苷酶

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Calystegines are polyhydroxylated nortropane alkaloids found in Convolvulaceae, Solanaceae, and other plant families. These plants produce common fruits and vegetables. The calystegine structures resemble sugars and suggest interaction with enzymes of carbohydrate metabolism. Maltase and sucrase are α-glucosidases contributing to human carbohydrate degradation in the small intestine. Inhibition of these enzymes by orally administered drugs is one option for treatment of diabetes mellitus type 2. In this study, inhibition of maltase and sucrase by calystegines A3 and B3 purified from potatoes was investigated. In silico docking studies confirmed binding of both calystegines to the active sites of the enzymes. Calystegine A3 showed low in vitro enzyme inhibition; calystegine B2 inhibited mainly sucrose activity. Both compounds were not transported by Caco-2 cells indicating low systemic availability. Vegetables rich in calystegine B2 should be further investigated as possible components of a diet preventing a steep increase in blood glucose after a carbohydrate-rich meal.
机译:甘氨酸甘油酯是在旋花科,茄科和其他植物科中发现的多羟基化的降冰片烷生物碱。这些植物生产常见的水果和蔬菜。 Calystegine结构类似于糖,提示与碳水化合物代谢酶相互作用。马尔他酶和蔗糖酶是α-葡萄糖苷酶,有助于小肠中人碳水化合物的降解。口服给药的药物抑制这些酶是治疗2型糖尿病的一种选择。在这项研究中,研究了从马铃薯中纯化得到的calystegines A3和B3对麦芽糖酶和蔗糖酶的抑制作用。在计算机对接研究中证实了两种calystegines都与酶的活性位点结合。 Calystegine A3的体外酶抑制作用很低。 Calystegine B2主要抑制蔗糖活性。两种化合物均未通过Caco-2细胞转运,表明全身利用率较低。富含calystegine B2的蔬菜应作为饮食中可能的成分进行进一步研究,以防止富含碳水化合物的餐后血糖急剧上升。

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