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Hispidulin: antioxidant properties and effect on mitochondrial energy metabolism.

机译:Hispidulin:抗氧化特性,并影响线粒体能量代谢。

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Hispidulin (6-methoxy-5,7,4'-trihydroxyflavone) and eupafolin (6-methoxy-5,7,3',4'-tetrahydroxyflavone), are flavonoids found in the leaves of Eupatorium litoralle. They have recognized antioxidant and antineoplastic properties, although their action mechanisms have not been previously described. We now report the effects of hispidulin on the oxidative metabolism of isolated rat liver mitochondria (Mit) and have also investigated the prooxidant and antioxidant capacity of both flavonoids. Hispidulin (0.05-0.2 mM) decreased the respiratory rate in state III and stimulated it in state IV, when glutamate or succinate was used as oxidizable substrate. Hispidulin inhibited enzymatic activities between complexes I and III of the respiratory chain. In broken Mit hispidulin (0.2 mM) slightly inhibited ATPase activity (25%). However, when intact Mit were used, the flavonoid stimulated this activity by 100%. Substrate energized mitochondrial swelling was markedly inhibited by hispidulin. Both hispidulin and eupafolin were able to promote iron release from ferritin, this effect being more accentuated with eupafolin with the suggestion of a possible involvement of H2O2 in the process. Hispidulin was incapable of donating electrons to the stable free radical DPPH, while eupafolin reacted with it in a similar way to ascorbic acid. The results indicate that hispidulin as an uncoupler of oxidative phosphorylation, is able to release iron from ferritin, but has distinct prooxidant and antioxidant properties when compared to eupafolin.
机译:组氨酸(6-甲氧基-5,7,4'-三羟基黄酮)和依法福林(6-甲氧基-5,7,3',4'-四羟基黄酮)是在紫茎泽兰的叶子中发现的类黄酮。他们已经认识到抗氧化剂和抗肿瘤特性,尽管它们的作用机理以前没有描述。现在,我们报告组蛋白对分离的大鼠肝线粒体(Mit)氧化代谢的影响,并且还研究了两种类黄酮的抗氧化剂和抗氧化能力。当谷氨酸或琥珀酸盐用作可氧化底物时,组蛋白(0.05-0.2 mM)降低了状态III的呼吸频率,并刺激了状态IV的呼吸频率。 Hispidulin抑制呼吸链复合物I和III之间的酶促活性。在破裂的Mit中,组蛋白(0.2 mM)略微抑制ATPase活性(25%)。但是,当使用完整的Mit时,类黄酮可以100%刺激这种活性。底物激发的线粒体肿胀被组蛋白显着抑制。组织蛋白和依法福林都能够促进铁从铁蛋白中的释放,依法福林使这种作用更加明显,并暗示过氧化氢可能参与该过程。 Hispidulin无法向稳定的自由基DPPH提供电子,而eupafolin与抗坏血酸的反应方式相似。结果表明,组蛋白作为氧化磷酸化的解偶联剂,能够从铁蛋白中释放铁,但与依法福林相比具有独特的抗氧化和抗氧化特性。

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