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芦丁对血红蛋白氧化的保护作用。

Protective effects of rutin against hemoglobin oxidation.

作者信息

Grinberg L N, Rachmilewitz E A, Newmark H

机构信息

Department of Hematology, Hadassah University Hospital, Jerusalem, Israel.

出版信息

Biochem Pharmacol. 1994 Aug 17;48(4):643-9. doi: 10.1016/0006-2952(94)90040-x.

Abstract

A prooxidant drug, primaquine (PQ) was used to produce oxidative stress in human red blood cells (RBC) in vitro. Rutin, a plant flavonoid, did not prevent PQ-induced cell lysis but protected against hemoglobin (Hb) oxidation inside RBC. After PQ removal, rutin failed to reduce preformed met-Hb indicating that the rutin protective effect manifests only in the presence of PQ. Since H2O2 was proved to mediate PQ-induced Hb oxidation, authentic Hb was studied for its reaction with H2O2 and rutin in solution. Rutin partially protected oxy-Hb against H2O2-induced oxidation and heme loss. Rutin was also shown to delay H2O2-induced met-Hb oxidation to ferryl-Hb. Rutin directly reduced ferryl-Hb to met-Hb in stoichiometric (1:1) reaction characterized by a rate constant of 100 to 130/M/sec. It is assumed that by reducing ferryl-Hb, rutin prevents oxy-Hb from reacting with ferryl-Hb (comproportionation reaction), thus preventing half of the oxy-Hb molecules from being converted to met-Hb. This mechanism is consistent with 50% inhibition by rutin (at the maximum of its activity) of PQ-induced oxy-Hb oxidation in RBC. The present results demonstrate new antioxidant properties of rutin that may be useful in diminishing oxidative damage to pathological red blood cells.

摘要

一种促氧化剂药物伯氨喹(PQ)被用于在体外诱导人红细胞(RBC)产生氧化应激。芦丁是一种植物类黄酮,它不能防止PQ诱导的细胞裂解,但能保护红细胞内的血红蛋白(Hb)不被氧化。去除PQ后,芦丁无法还原预先形成的高铁血红蛋白(met-Hb),这表明芦丁的保护作用仅在有PQ存在时才会显现。由于已证明过氧化氢(H2O2)介导PQ诱导的Hb氧化,因此研究了纯血红蛋白在溶液中与H2O2和芦丁的反应。芦丁能部分保护氧合血红蛋白(oxy-Hb)免受H2O2诱导的氧化和血红素损失。还发现芦丁能延缓H2O2诱导的met-Hb氧化为高铁血红素(ferryl-Hb)。芦丁以化学计量比(1:1)直接将ferryl-Hb还原为met-Hb,反应速率常数为100至130/M/秒。据推测,通过还原ferryl-Hb,芦丁可防止oxy-Hb与ferryl-Hb反应(互变异构反应),从而防止一半的oxy-Hb分子转化为met-Hb。这一机制与芦丁(在其最大活性时)对红细胞中PQ诱导的oxy-Hb氧化有50%的抑制作用相一致。目前的结果证明了芦丁具有新的抗氧化特性,这可能有助于减少对病理性红细胞的氧化损伤。

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