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Detection and identification of oxidants formed during •NO/O2•– reaction: A multi-well plate CW-EPR spectroscopy combined with HPLC analyses

机译:•NO / O2•-反应过程中形成的氧化剂的检测和鉴定:多孔板CW-EPR光谱结合HPLC分析

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摘要

New techniques and probes are routinely emerging for detecting short-lived free radicals such as superoxide radical anion (O2•–), nitric oxide (NO) and transient oxidants derived from peroxynitrite (ONOO/ONOOH). Recently, we reported the profiles of oxidation products (2-hydroxyethidine, ethidium, and various dimeric products) of the fluorogenic probe hydroethidine (HE) in the NO/O2•– system (Zielonka et al. J. Biol. Chem. 2012). In this study, we used HPLC analyses of HE oxidation products in combination with continuous wave EPR (CW-EPR) spin trapping with 5-tert-butoxycarbonyl-5-methyl-1-pyrroline N-oxide (BMPO) to define the identity of the oxidizing species formed in the NO/O2•– system. EPR spin-trapping technique is still considered as the gold standard for characterization of free radicals and their intermediates. We monitored formation of BMPO-superoxide (BMPO-OOH) and BMPO-hydroxyl (BMPO-OH) radical adducts. Simultaneous analyses of results from EPR spin-trapping and HPLC measurements are helpful in the interpretation of the mechanism of formation of products of HE oxidation.
机译:常规地出现了检测短寿命自由基的新技术和探针,例如超氧自由基阴离子(O2 •– ),一氧化氮( NO)和由其衍生的瞬态氧化剂过氧亚硝酸盐(ONOO / ONOOH)。最近,我们报道了在 NO / O2 •– 系统(Zielonka等人,J.Biol.Chem.2012)。在这项研究中,我们结合了5-叔丁氧基羰基-5-甲基-1-吡咯啉N-氧化物(BMPO)的连续波EPR(CW-EPR)自旋捕集,对HE氧化产物进行了HPLC分析,以定义在 NO / O2 •– 系统中形成的氧化物质。 EPR自旋捕获技术仍被认为是表征自由基及其中间体的金标准。我们监测了BMPO-超氧化物(BMPO- OOH)和BMPO-羟基(BMPO- OH)自由基加合物的形成。 EPR旋转捕集和HPLC测量结果的同时分析有助于解释HE氧化产物的形成机理。

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