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Inhibitory effect to quercetin metabolites and their related derivatives on copper ion-induced lipid peroxidation in human low-density lipoprotein

机译:槲皮素代谢物及其相关衍生物对铜离子诱导的人低密度脂蛋白脂质过氧化的抑制作用

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To determine the antioxidant activity of dietary quercetin (3,3',4',5,7-pentahydroxyflavone) in the blood circulation, we measured the inhibitory effect of quercetin metabolites and their related derivatives on copper ion-induced lipid peroxidation of human low- density lipoprotein (LDL). Conjugated quercetin metabolites were prepared from the plasma of rat i h after oral administration of quercetin aglycone (40 #mu#mole/rat). The rate of cholesteryl ester hydroperoxide (CE-OOH) accumulation and the rate of #alpha#-tocopherol consumption in mixtures of LDL solution (0.4 mig/ml) with equal volumes of this preparation were slower than the rates in mixtures of LDL with preparations from control rats. The concentrations of CE-OOH after 2 h oxidation in the mixtures of LDL with preparations of conjugated quercetin metabolites were significantly lower than those in the control preparation. It is therefore confirmed that conjugated quercetin metabolites have an inhibitory effect on copper ion-induced lipid peroxidation in human LDL. Quercetin 7-O-#beta#- glucopyranoside (Q7G) and rhamnetin (3,3',4',5-tetrahydroxy-7-methoxyflavone) exerted strong inhibition and their effect continued even after complete consumption, similarly to quercetin aglycone. The effect of quercetin 3-O-#beta#-glucopyranoside (Q3G) did not continue after its complete consumption, indicating that the antioxidant mechanism of quercetin conjugates lacking a free hydroxyl group at the 3-position is different from that of the other quercetin conjugates. The result that 4'-O-#beta#-glucopyranoside (Q4'G) and isorhamnetin (3,4',5,7-tetrahydroxy-3'-methoxyfiavone) showed little inhibition implies that introduction of a conjugate group to the position of the dihydroxyl group in the B ring markedly decreases the inhibitory effect. The results of azo radical-induced lipid peroxidation of LDL and the measurement of free radical scavenging capacity using stable free radical, 1,1,-diphenyl-2-picrylhydrazyl, demonstrated that the o-dihydroxyl structure in the B ring is required to exert maximum free radical scavenging activity. It is there- fore likely that conjugation occurs at least partly in positions other than the B ring during the process of metabolic conversion so that the inhibitory effect of dietary quercetin is retained in blood plasma after absorption.
机译:为了确定膳食槲皮素(3,3',4',5,7-五羟基黄酮)在血液循环中的抗氧化活性,我们测量了槲皮素代谢物及其相关衍生物对铜离子诱导的人低脂脂质过氧化的抑制作用。 -密度脂蛋白(LDL)。口服槲皮素糖苷配基(40μmol/ mol)后,从大鼠血浆中制备槲皮素共轭物。等体积LDL溶液(0.4 mig / ml)的混合物中胆固醇胆固醇过氧化氢(CE-OOH)的积累速率和#alpha#-生育酚消耗的速率比LDL与制剂的混合物中的速率慢来自对照大鼠。 LDL与槲皮素代谢产物共混物混合后2小时,CE-OOH的浓度显着低于对照制剂。因此,证实了缀合的槲皮素代谢产物对人LDL中铜离子诱导的脂质过氧化具有抑制作用。槲皮素7-O-#β#-吡喃葡萄糖苷(Q7G)和鼠李素(3,3',4',5-四羟基-7-甲氧基黄酮)表现出强烈的抑制作用,甚至在完全食用后其作用仍持续,类似于槲皮素苷元。槲皮素3-O-#β#-吡喃葡萄糖苷(Q3G)完全消耗后并未继续起作用,这表明在3-位缺少游离羟基的槲皮素共轭物的抗氧化机理不同于其他槲皮素共轭物。 4'-O-#β#-吡喃葡萄糖苷(Q4'G)和异鼠李素(3,4',5,7-四羟基-3'-甲氧基黄酮)几乎没有抑制作用的结果表明在该位置引入了共轭基团在B环中的二羟基基团的显着降低抑制作用。偶氮自由基诱导的LDL脂质过氧化的结果以及使用稳定的自由基1,1,-二苯基-2-吡啶二酰肼测量自由基清除能力的结果表明,B环中的邻二羟基结构需要发挥作用最大的自由基清除活性。因此很可能在代谢转化过程中至少部分发生在B环以外的位置,从而使吸收后的饮食中槲皮素的抑制作用保留在血浆中。

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