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具有三种pH依赖性构象的次氮基三乙酸铁络合物诱导脂质过氧化的能力。

Ability of ferric nitrilotriacetate complex with three pH-dependent conformations to induce lipid peroxidation.

作者信息

Akai Kaori, Tsuchiya Koichiro, Tokumura Akira, Kogure Kentaro, Ueno Satoru, Shibata Akira, Tamaki Toshiaki, Fukuzawa Kenji

机构信息

Graduate School of Pharmaceutical Sciences, The University of Tokushima, 1-78-1 Sho-machi, Tokushima 770-8505, Japan.

出版信息

Free Radic Res. 2004 Sep;38(9):951-62. doi: 10.1080/1071576042000261945.

Abstract

This study examined the generation of reactive oxygen species (ROS) and the induction of lipid peroxidation by carcinogenic iron(III)-NTA complex (1:1), which has three conformations with two pKa values (pKa1 approximately 4, pKa2 approximately 8). These conformations are type (a) in acidic conditions of pH 1-6, type (n) in neutral conditions of pH 3-9, and type (b) in basic conditions of pH 7-10. The iron(III)-NTA complex was reduced to iron(II) complex under cool-white fluorescent light without the presence of any reducer. The reduction rates of three species of iron(III)-NTA were in the order type (a) >> type (n) > type (b). Iron(III)-NTA-dependent lipid peroxidation was induced in the presence and absence of preformed lipid peroxides (L-OOH) through processes associated with and without photoreduction of iron(III). The order of the abilities of the three species of iron(III)-NTA to initiate the three mechanisms of lipid peroxidation was: (1) type (a) > type (n) > type (b) in lipid peroxidation that is induced L-OOH- and H2O2-dependently and mediated by the photoreduction of iron(III); (2) type (b) > type (n) > type (a) in lipid peroxidation that is induced L-OOH- and H2O2-dependently but not mediated by the photoreduction of iron(III); (3) type (n) > type (b) > type (a) in lipid peroxidation that is induced peroxide-independently and mediated by the photoactivation but not by the photoreduction of iron(III). The rate of lipid peroxidation induced L-OOH-dependently is faster than that induced H2O2-dependently in the mechanism (1), but the rate of lipid peroxidation induced H2O2-dependently is faster than that induced L-OOH-dependently in the mechanism (2). In the lag process of mechanism (3), L-OOH and/or some free radical species, not 1O2, were generated by photoactivation of iron(III)-NTA. These multiple pro-oxidant properties that depend on the species of iron(III)-NTA were postulated to be a principal cause of its carcinogenicity.

摘要

本研究检测了致癌性铁(III)-NTA复合物(1:1)产生的活性氧(ROS)以及脂质过氧化的诱导情况,该复合物有三种构象,具有两个pKa值(pKa1约为4,pKa2约为8)。这些构象在pH 1 - 6的酸性条件下为(a)型,在pH 3 - 9的中性条件下为(n)型,在pH 7 - 10的碱性条件下为(b)型。在没有任何还原剂存在的情况下,铁(III)-NTA复合物在冷白色荧光灯下被还原为铁(II)复合物。三种铁(III)-NTA的还原速率顺序为(a)型 >> (n)型 > (b)型。在有和没有预先形成的脂质过氧化物(L-OOH)存在的情况下,通过与铁(III)的光还原相关和不相关的过程诱导了铁(III)-NTA依赖性脂质过氧化。三种铁(III)-NTA引发脂质过氧化三种机制的能力顺序为:(1)在由L-OOH和H2O2依赖性诱导且由铁(III)的光还原介导的脂质过氧化中,(a)型 > (n)型 > (b)型;(2)在由L-OOH和H2O2依赖性诱导但不由铁(III)的光还原介导的脂质过氧化中,(b)型 > (n)型 > (a)型;(3)在由过氧化物非依赖性诱导且由光活化而非铁(III)的光还原介导的脂质过氧化中,(n)型 > (b)型 > (a)型。在机制(1)中,由L-OOH依赖性诱导的脂质过氧化速率比由H2O2依赖性诱导的快,但在机制(2)中,由H2O2依赖性诱导的脂质过氧化速率比由L-OOH依赖性诱导的快。在机制(3)的延迟过程中,铁(III)-NTA的光活化产生了L-OOH和/或一些自由基物种,但不是单线态氧。这些依赖于铁(III)-NTA种类的多种促氧化特性被认为是其致癌性的主要原因。

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