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钒与脂质过氧化:钒酰和羟基自由基参与的证据。

Vanadium and lipid peroxidation: evidence for involvement of vanadyl and hydroxyl radical.

作者信息

Keller R J, Sharma R P, Grover T A, Piette L H

机构信息

Graduate Program in Toxicology, Utah State University, Logan 84322.

出版信息

Arch Biochem Biophys. 1988 Sep;265(2):524-33. doi: 10.1016/0003-9861(88)90157-9.

Abstract

The present study was designed to determine which form of vanadium is involved in initiating conjugated diene formation in both purified and partially peroxidized fatty acids, and to determine if active oxygen radicals are involved in this process. We report that vanadyl is the active form of vanadium in initiating conjugated diene formation in micelles prepared from purified fatty acids or partially peroxidized fatty acids. Vanadate did not initiate conjugated diene formation in either case. Hydroxyl radicals were shown to be involved in the initiation of diene conjugation when vanadyl and hydrogen peroxide were added together in a reaction mixture. In this case, there was a rapid burst of conjugated diene formation which quickly leveled off. Using spin trapping techniques, hydroxyl radicals were shown to be generated in the vanadyl-catalyzed break-down of fatty acid hydroperoxides. A comparison was made between the ability of vanadyl or vanadyl chelates to decompose hydrogen peroxide and catalyze the decomposition of fatty acid hydroperoxides. It was found that strongly chelated vanadyl (vanadyl/EDTA) was much less effective in decomposing both hydrogen peroxide and fatty acid hydroperoxides than the weak vanadyl chelates (e.g., vanadyl/ADP). This study suggests a mechanism to explain the effects of vanadium on lipid peroxidation.

摘要

本研究旨在确定哪种形式的钒参与引发纯化脂肪酸和部分过氧化脂肪酸中共轭二烯的形成,并确定活性氧自由基是否参与此过程。我们报告,钒酰是钒在由纯化脂肪酸或部分过氧化脂肪酸制备的胶束中引发共轭二烯形成的活性形式。在任何一种情况下,钒酸盐都不会引发共轭二烯的形成。当在反应混合物中一起加入钒酰和过氧化氢时,羟基自由基被证明参与了二烯共轭的引发。在这种情况下,共轭二烯的形成迅速爆发,然后迅速趋于平稳。使用自旋捕获技术,羟基自由基在钒酰催化的脂肪酸氢过氧化物分解过程中产生。对钒酰或钒酰螯合物分解过氧化氢和催化脂肪酸氢过氧化物分解的能力进行了比较。发现强螯合的钒酰(钒酰/乙二胺四乙酸)在分解过氧化氢和脂肪酸氢过氧化物方面比弱钒酰螯合物(如钒酰/二磷酸腺苷)的效果要差得多。本研究提出了一种机制来解释钒对脂质过氧化的影响。

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