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Inhibitory activity of Ecklonia stolonifera and its isolated phlorotannins against Cu2+-induced low-density lipoprotein oxidation

机译:sto菜及其分离的金丝桃宁对Cu2 +诱导的低密度脂蛋白氧化的抑制作用

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Since the oxidation of low-density lipoprotein (LDL) is one of the main causes of atherosclerosis, Cu2+-induced LDL oxidation and conjugated diene formation is currently being explored for the development of pharmaceutical drugs or functional foods for the treatment of atherosclerosis. The present work investigated the inhibitory effects on in vitro Cu2+-induced human LDL oxidation and conjugated diene formation of the methanol (MeOH) extract of the edible brown alga (Ecklonia stolonifera) and its different solvent-soluble fractions, as well as the phlorotannins isolated from them. The most active ethyl acetate fraction was selected for chromatographic separation to isolate six phlorotannins: phloroglucinol (1), dioxinodehydroeckol (2), eckol (3), phlorofucofuroeckol A (4), dieckol (5), and 7-phloroeckol (6). Compounds 3–6 showed potent inhibitory activity against Cu2+-induced LDL oxidation as compared with probucol, a well-known clinical therapeutic agent for hypercholesterolemia. Moreover, when compound 5 (at levels of 9 and 4.5 μM) was used in combination with probucol (4.5 μM), they additively inhibited Cu2+-induced LDL oxidation. In addition, 3–5 significantly prolonged the lag time of conjugated diene formation at 10 μM. These results suggest that the potent antiatherosclerotic effects of E. stolonifera and its isolated phlorotannins may be partly attributed to the inhibition of Cu2+-induced LDL oxidation and conjugated diene formation.
机译:由于低密度脂蛋白(LDL)的氧化是动脉粥样硬化的主要原因之一,目前正在研究Cu2 +诱导的LDL氧化和共轭二烯的形成,以开发用于治疗糖尿病的药物或功能性食品。动脉粥样硬化。本工作研究了可食用褐藻(Ecklonia stolonifera)及其不同溶剂可溶级分对Cu2 +诱导的人LDL氧化和甲醇(MeOH)提取物的共轭二烯形成的抑制作用,以及因为从它们中分离出的phlorotannins。选择活性最强的乙酸乙酯馏分进行色谱分离,以分离出六种间苯三酚:间苯三酚(1),二氧邻苯二酚(2),护甲酚(3),邻氟呋喃甲酚A(4),二eckol(5)和7-Phroroeckol(6)。与众所周知的高胆固醇血症临床治疗剂普罗布考相比,化合物3-6对Cu2 +诱导的LDL氧化表现出有效的抑制作用。此外,当化合物5(9和4.5μM的水平)与普罗布考(4.5μM)组合使用时,它们可加成抑制Cu2 +诱导的LDL氧化。另外,当10μM时,3-5显着延长了共轭二烯形成的滞后时间。这些结果表明,E。stolonifera及其分离的phlorotannins的强抗动脉粥样硬化作用可能部分归因于抑制Cu2 +诱导的LDL氧化和共轭二烯的形成。

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