Graduate School of Marine Science and Technology, Tokyo University of Marine Science and Technology, Japan.
Biol Pharm Bull. 2012;35(8):1264-8. doi: 10.1248/bpb.b12-00058.
Peach leaf extract has anti-hyperglycemic effects on the postprandial blood glucose level in glucose-loaded mice. In our previous study, the mechanism of action was considered to be the inhibition of glucose absorption in the small intestine. To elucidate the active principle in peach leaf, purification of the active compound and a structure determination were performed. With the use of bioassay-guided fractionation using glucose-loaded mice, the acetylated kaempferol glycoside multiflorin A (MFA), a potent inhibitor of glucose absorption from the intestine, was isolated from the MeOH extract of leaf of the edible peach Prunus persica. The structure was identified by HPLC using thiazolizine derivatives and by an analysis of its spectral data. The inhibitory effect of MFA against glucose absorption was demonstrated in the dose dependent manner in mice. However, as the deacetylated analog of MFA, multiflorin B did not show the activity at the in vivo, the activity of MFA was suggested to depend on the acetyl group on the sugar moiety. This is the first report of anti-hyperglycemic activity of MFA in peach leaf extract. MFA may be useful in functional foods or medicines for preventing the postprandial absorption of glucose in hyperglycemia.
桃叶提取物对葡萄糖负荷小鼠餐后血糖水平具有降血糖作用。在我们之前的研究中,其作用机制被认为是抑制小肠对葡萄糖的吸收。为了阐明桃叶中的活性成分,我们对其进行了活性化合物的纯化和结构鉴定。使用葡萄糖负荷小鼠进行基于生物测定的分步分离,从可食用桃(Prunus persica)叶的甲醇提取物中分离出了乙酰化山柰酚糖苷化桃叶珊瑚苷 A(MFA),它是一种抑制肠道葡萄糖吸收的有效抑制剂。通过使用噻唑啉衍生物的 HPLC 和对其光谱数据的分析,鉴定了其结构。MFA 在体内对葡萄糖吸收的抑制作用呈剂量依赖性。然而,作为 MFA 的去乙酰化类似物,桃叶珊瑚苷 B 没有表现出活性,因此 MFA 的活性可能依赖于糖部分上的乙酰基。这是 MFA 在桃叶提取物中具有降血糖活性的首次报道。MFA 可能对预防高血糖餐后葡萄糖吸收的功能性食品或药物有用。