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[过氧化氢诱导氧合血红蛋白氧化的机制]

[Mechanism of oxyhemoglobin oxidation induced by hydrogen peroxide].

作者信息

Titov V Iu, Petrenko Iu M, Petrov V A, Vladimirov Iu A

出版信息

Biull Eksp Biol Med. 1991 Jul;112(7):46-9.

PMID:1793852
Abstract

The process of oxyhemoglobin oxidation initiated by hydrogen peroxide in low (10(-7) M) concentrations was investigated. It was found, that H2O2 in this concentration is able to induce the process of chain oxidation of oxyhemoglobin to methemoglobin. The following observations indicate that the process is essentially the chain reaction: 1) The amount of the methemoglobin in haem groups, produced in the reaction, exceed by 20 times the quantity of hydrogen, added initially, to induce the oxidation. 2) Catalase stopped this process at any stage of the reaction. This fact implies that the chain process involves generation of new molecules of H2O2 in the course of oxidation of oxyhemoglobin. The chain reaction proceeded only in the presence of oxygen. But if oxygen was introduced into hemoglobin solution, preincubated with H2O2 in vacuum, than again the oxidation of hemoglobin developed. Apparently, H2O2 in low concentrations appears, mainly, as an inductor of the oxyhemoglobin autooxidation.

摘要

研究了低浓度(10⁻⁷M)过氧化氢引发的氧合血红蛋白氧化过程。发现该浓度的H₂O₂能够诱导氧合血红蛋白向高铁血红蛋白的链式氧化过程。以下观察结果表明该过程本质上是链式反应:1)反应中血红素基团产生的高铁血红蛋白量比最初添加以诱导氧化的氢气量高出20倍。2)过氧化氢酶在反应的任何阶段都能阻止该过程。这一事实表明链式过程涉及氧合血红蛋白氧化过程中产生新的H₂O₂分子。链式反应仅在有氧气存在时进行。但是,如果将氧气引入在真空中与H₂O₂预孵育的血红蛋白溶液中,血红蛋白的氧化会再次发生。显然,低浓度的H₂O₂主要表现为氧合血红蛋白自动氧化的诱导剂。

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