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白藜芦醇激活红细胞质膜氧化还原系统:抗氧化性能的可能机制。

Activation of the erythrocyte plasma membrane redox system by resveratrol: a possible mechanism for antioxidant properties.

机构信息

Department of Biochemistry, University of Allahabad, Allahabad 211002, India.

出版信息

Pharmacol Rep. 2010 Jul-Aug;62(4):726-32. doi: 10.1016/s1734-1140(10)70330-3.

Abstract

Resveratrol is one of the most widely studied of all the plant-produced polyphenols and has diverse, beneficial health effects including anti-cancer and cardio-protective effects. Many of the biological actions of this polyphenol have been attributed to its antioxidant properties. Erythrocytes contain a plasma membrane redox system (PMRS), which transfers electrons from intracellular donors (NADH and/or ascorbate (ASC)) to extracellular acceptors. There is evidence that the intracellular ASC donates electrons to extracellular ascorbate free radicals (AFRs) via the PMRS, which encompasses an AFR reductase; such a redox system enables the cells to effectively counteract oxidative processes.We present evidence to show that human erythrocytes take up resveratrol, and once inside the cell, resveratrol can donate electrons to extracellular electron acceptors through the erythrocyte PMRS and AFR reductase. Incubating human erythrocytes with resveratrol (10 μM) caused a significant activation of the PMRS (41%) and AFR reductase (30%) over (basal level) the control; the effect of resveratrol was concentration-dependent. The electron donating ability of resveratrol is slightly less than that observed with quercetin. The role of resveratrol in activating the erythrocyte PMRS and AFR reductase may assume significance in all disease conditions in which there is a decrease in plasma antioxidant potential.

摘要

白藜芦醇是所有植物源多酚中研究最广泛的一种,具有多种有益的健康作用,包括抗癌和心脏保护作用。这种多酚的许多生物学作用归因于其抗氧化特性。红细胞含有一个质膜氧化还原系统(PMRS),它将电子从细胞内供体(NADH 和/或抗坏血酸(ASC))转移到细胞外受体。有证据表明,细胞内 ASC 通过 PMRS 将电子捐献给细胞外抗坏血酸自由基(AFR),其中包括 AFR 还原酶;这样的氧化还原系统使细胞能够有效地对抗氧化过程。我们提供的证据表明,人红细胞摄取白藜芦醇,一旦进入细胞,白藜芦醇就可以通过红细胞 PMRS 和 AFR 还原酶将电子捐献给细胞外电子受体。用白藜芦醇(10 μM)孵育人红细胞会导致 PMRS(41%)和 AFR 还原酶(30%)明显激活(对照水平);白藜芦醇的作用呈浓度依赖性。白藜芦醇的电子供体能力略低于观察到的槲皮素。在所有血浆抗氧化能力下降的疾病情况下,白藜芦醇激活红细胞 PMRS 和 AFR 还原酶的作用可能具有重要意义。

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