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Reactive nitrogen species reactivities with nitrones: Theoretical and experimental studies

机译:硝酮与反应性氮物种的反应性:理论和实验研究

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Reactive nitrogen species (RNS) such as nitrogen dioxide ( ?NO 2), peroxynitrite (ONOO -), and nitrosoperoxycarbonate (ONOOCO 2 -) are among the most damaging species present in biological systems due to their ability to cause modification of key biomolecular systems through oxidation, nitrosylation, and nitration. Nitrone spin traps are known to react with free radicals and nonradicals via electrophilic and nucleophilic addition reactions and have been employed as reagents to detect radicals using electron paramagnetic resonance (EPR) spectroscopy and as pharmacological agents against oxidative stress-mediated injury. This study examines the reactivity of cyclic nitrones such as 5,5-dimethylpyrroline N-oxide (DMPO) with ?NO 2, ONOO -, ONOOCO 2 -, SNAP, and SIN-1 using EPR. The thermochemistries of nitrone reactivity with RNS and isotropic hfsc's of the addition products were also calculated at the PCM(water)/B3LYP/6- 31+G* *//B3LYP/6-31G* level of theory with and without explicit water molecules to rationalize the nature of the observed EPR spectra. Spin trapping of other RNS such as azide ( ?N 3), nitrogen trioxide ( ?NO 3), amino ( ?NH 2) radicals and nitroxyl (HNO) were also theoretically and experimentally investigated by EPR spin trapping and mass spectrometry. This study also shows that other spin traps such as 5-carbamoyl-5-methyl-pyrroline N-oxide, 5-ethoxycarbonyl-5-methyl-pyrroline N-oxide, and 5-(diethoxyphosphoryl)-5-methyl-1-pyrroline N-oxide can react with radical and nonradical RNS, thus making spin traps suitable probes as well as antioxidants against RNS-mediated oxidative damage.
机译:活性氮物质(RNS),例如二氧化氮(?NO 2),过氧亚硝酸盐(ONOO-)和亚硝基过氧碳酸盐(ONOOCO 2-)属于生物系统中最具破坏性的物种,因为它们具有引起关键生物分子系统改性的能力。通过氧化,亚硝化和硝化作用。已知氮自旋阱通过亲电子和亲核加成反应与自由基和非自由基反应,并已被用作使用电子顺磁共振(EPR)光谱检测自由基的试剂,以及作为抗氧化应激介导的损伤的药理剂。这项研究使用EPR检验了5,5-二甲基吡咯啉N-氧化物(DMPO)等环状硝酮与αNO2,ONOO-,ONOOCO 2-,SNAP和SIN-1的反应性。还可以通过理论PCM(水)/ B3LYP / 6- 31 + G * * // B3LYP / 6-31G *的理论水平(有或没有明显的水分子)来计算与RNS和加成产物的各向同性hfsc的腈反应性的热化学性质使观察到的EPR光谱的性质合理化。还通过EPR自旋捕集和质谱在理论和实验上研究了其他RNS的自旋捕集,例如叠氮化物(?N 3),三氧化氮(?NO 3),氨基(?NH 2 2)自由基和硝酰基(HNO)。该研究还显示了其他自旋阱,例如5-氨基甲酰基-5-甲基-吡咯啉N-氧化物,5-乙氧基羰基-5-甲基-吡咯啉N-氧化物和5-(二乙氧基磷酰基)-5-甲基-1-吡咯啉N-氧化物可与自由基和非自由基RNS反应,从而使自旋阱适合作为探针以及抗RNS介导的氧化损伤的抗氧化剂。

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