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首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >The line asymmetry of electron spin resonance spectra as a tool to determine the cis:trans ratio for spin-trapping adducts of chiral pyrrolines N-oxides: the mechanism of formation of hydroxyl radical adducts of EMPO, DEPMPO, and DIPPMPO in the ische
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The line asymmetry of electron spin resonance spectra as a tool to determine the cis:trans ratio for spin-trapping adducts of chiral pyrrolines N-oxides: the mechanism of formation of hydroxyl radical adducts of EMPO, DEPMPO, and DIPPMPO in the ische

机译:电子自旋共振谱的线不对称性,用于确定手性吡咯啉N-氧化物自旋俘获加合物的顺式:反式比率:EMPO,DEPMPO和DIPPMPO的羟基自由基加合物形成的机理

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Nonstereospecific addition of free radicals to chiral nitrones yields cis/trans diastereoisomeric nitroxides often displaying different electron spin resonance (ESR) characteristics. Glutathione peroxidase-glutathione (GPx-GSH) reaction was applied to reduce the superoxide adducts (nitrone/*OOH) to the corresponding hydroxyl radical (HO*) adducts (nitrone/*OH) of two nitrones increasingly used in biological spin trapping, namely 5-diethoxyphosphoryl-5-methyl-1-pyrroline N-oxide (DEPMPO) and 5-ethoxycarbonyl-5-methyl-1-pyrroline N-oxide, and of 5-diisopropoxyphosphoryl-5-methyl-1-pyrroline N-oxide (DIPPMPO), a sterically hindered DEPMPO analogue. The method offered improved conditions to record highly resolved ESR spectra and by accurate simulation of line asymmetry we obtained clear evidence for the existence of previously unrecognized isomer pairs of cis- and trans-[DEPMPO/*OH] and [DIPPMPO/*OH]. Additional nitrone/*OH generation methods were used, i.e. photolysis of hydrogen peroxide and the Fenton reaction. We developed a kinetic model involving first- and second-order decay and a secondary conversion of trans to cis isomer to fully account for the strongly configuration-dependent behavior of nitrone/*OH. In the reductive system and, to a lower extent, in the Fenton or photolytic systems cis-nitrone/*OH was the more stable diastereoisomer. In various biologically relevant milieu, we found that the cis:trans-nitrone/*OH ratio determined right after the spin adduct formation significantly differed upon the GPx-GSH vs (Fenton or photolytic) systems of formation. This new mechanistic ESR index consistently showed for all nitrones that nitrone/*OH signals detected in the postischemic effluents of ischemic isolated rat livers are the reduction products of primary nitrone/*OOH. Thus, ESR deconvolution of cis/trans diastereoisomers is of great interest in the study of HO* formation in biological systems.
机译:自由基向手性硝酮的非立体特异性加成产生通常显示不同电子自旋共振(ESR)特性的顺式/反式非对映异构氮氧化物。谷胱甘肽过氧化物酶-谷胱甘肽(GPx-GSH)反应用于将超氧化物加合物(nitrone / * OOH)还原为越来越多地用于生物自旋捕集的两个硝酮的相应羟基自由基(HO *)加合物(nitrone / * OH),即5-二乙氧基磷酰基-5-甲基-1-吡咯啉N-氧化物(DEPMPO)和5-乙氧基羰基-5-甲基-1-吡咯啉N-氧化物和5-二异丙氧基磷酰基-5-甲基-1-吡咯啉N-氧化物( DIPPMPO),位阻DEPMPO类似物。该方法为记录高度分辨的ESR光谱提供了改善的条件,并且通过精确模拟线不对称性,我们获得了先前无法识别的顺式和反式[DEPMPO / * OH]和[DIPPMPO / * OH]异构体对的清晰证据。使用了另外的硝酮/ * OH生成方法,即过氧化氢的光解和芬顿反应。我们开发了一个动力学模型,涉及一阶和二阶衰变以及反式到顺式异构体的二次转化,以充分说明硝酮/ * OH的强烈依赖构型的行为。在还原体系中,以及在较低程度上,在Fenton或光解体系中,顺-硝基/ * OH是更稳定的非对映异构体。在各种生物学相关的环境中,我们发现,自旋加合物形成后立即确定的顺式:反式-硝基/ * OH比在GPx-GSH与(Fenton或光解)体系形成时显着不同。这一新的机械ESR指数始终表明,对于所有硝酮,在缺血离体大鼠肝脏的缺血后流出物中检测到的硝酮/ * OH信号是伯硝酮/ * OOH的还原产物。因此,顺式/反式非对映异构体的ESR反卷积在生物学系统中HO *形成的研究中非常重要。

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