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在非质子介质中,超氧化物与选定的脂肪族和芳香族卤代烃反应过程中的化学发光发射。

Chemiluminescence emission during reactions between superoxide and selected aliphatic and aromatic halocarbons in aprotic media.

作者信息

Shoaf A R, Shaikh A U, Ford J H, Carlson W C, Steele R H

机构信息

Health Protection Section, Bowman Gray School of Medicine, Wake Forest University, Winston-Salem, NC 27157, USA.

出版信息

J Biolumin Chemilumin. 1996 Jan-Feb;11(1):9-22. doi: 10.1002/(SICI)1099-1271(199601)11:1<9::AID-BIO396>3.0.CO;2-N.

Abstract

The reactions between superoxide free radical anion (.O2-) with the halocarbons CCl4. CHCl3, BrCH2CH2Br(EDB), decachlora-biphenyl (DCBP), and 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) in dimethyl sulphoxide (DMSO) results in the emission of chemiluminescence (CL). The chemiluminescence reactions are characterized as having biphasic second order kinetics, CL wavelengths between 350 nm and 650 nm, and exhibiting perturbation by chemicals reactive with singlet oxygen. These data suggest that singlet oxygen species are the excited state responsible for the light emissions. Polarographic studies confirm .O2- consumption and halide release in the reactions, while gas liquid chromatography and NBT reduction demonstrate the decomposition of the halocarbons into products. A chemiluminescent reaction mechanism is proposed involving reductive dehalogenation of the halocarbons and the generation of singlet oxygen. The significance of singlet oxygen generation is discussed with respect to a general mechanism for explaining the rapid initiation of lipid peroxidative membrane damage in halocarbon toxigenicity in animal and plant tissues.

摘要

超氧自由基阴离子(·O₂⁻)与卤代烃四氯化碳(CCl₄)、三氯甲烷(CHCl₃)、1,2 - 二溴乙烷(EDB)、十氯联苯(DCBP)以及2,3,7,8 - 四氯二苯并 - p - 二噁英(TCDD)在二甲基亚砜(DMSO)中发生反应,会产生化学发光(CL)现象。这些化学发光反应的特征为具有双相二级动力学、CL波长在350纳米至650纳米之间,并且会受到与单线态氧发生反应的化学物质的干扰。这些数据表明单线态氧物种是导致发光的激发态。极谱研究证实了反应中·O₂⁻的消耗和卤化物的释放,而气相色谱法和NBT还原法表明卤代烃分解成了产物。本文提出了一种化学发光反应机制,该机制涉及卤代烃的还原脱卤作用以及单线态氧的生成。针对解释动植物组织中卤代烃毒性导致脂质过氧化膜损伤快速引发的一般机制,本文讨论了单线态氧生成的意义。

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