由forrest - hepburn机制形成的自旋捕获伪影的研究。

Free radical biology & medicine Pub Date : 2013-12-01 Epub Date: 2013-07-10 DOI:10.1016/j.freeradbiomed.2013.07.006
Fabian Leinisch, Jinjie Jiang, Eugene F DeRose, Valery V Khramtsov, Ronald P Mason
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引用次数: 0

摘要

用ESR自旋捕获法检测自由基依赖于在硝基/亚硝基化合物中特定添加自由基。也有人提出,自旋阱可以在生物系统中发生反应,产生假阳性结果。对于硝基自旋阱,首先由Forrester和Hepburn描述的与亲核试剂的反应被认为是伪影的最关键来源。对于伪迹识别,可以使用ESR预孵育方法,该方法采用同位素标记的自旋陷阱。本文研究了快速亚硝酸盐-羟胺平衡化学反应对该方法有效性的影响。使用(更快的)吸入技术,我们发现在铁氰化物介导的亚硫酸盐氧化过程中,福斯特-赫本机制也有助于DMPO/(•)SO3(-)加合物的形成,但如果使用更有效的辣根过氧化物酶,则没有发现人工DMPO/(•)SO3(-)形成的证据。这是ESR证据,表明forrest - hepburn机制可以在温和的条件下发生,具体取决于实验细节。该技术还可以用于测试其他工件机制。我们更详细地研究了已知的DBNBS与色氨酸的烯反应。我们发现光会诱发强烈的伪信号;然而,经过非典型的长时间孵育,我们发现人工制品也是热形成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Investigation of spin-trapping artifacts formed by the Forrester-Hepburn mechanism.

Investigation of spin-trapping artifacts formed by the Forrester-Hepburn mechanism.

Investigation of spin-trapping artifacts formed by the Forrester-Hepburn mechanism.

Investigation of spin-trapping artifacts formed by the Forrester-Hepburn mechanism.

Free radical detection with ESR spin trapping relies on the specific addition of the radical to nitrone/nitroso compounds. It also has been proposed that spin traps can react in biological systems to give false-positive results. For nitrone spin traps, the reaction with nucleophiles, first described by Forrester and Hepburn, has been discussed as the most critical source of artifacts. For artifact identification, the ESR preincubation method may be used, which employs isotopically marked spin traps. Here we investigated the influence of fast sulfite-hydroxylamine equilibrium chemistry on the validity of this assay. Using the (faster) aspiration technique, we found that the Forrester-Hepburn mechanism also contributes to DMPO/(•)SO3(-) adduct formation during ferricyanide-mediated sulfite oxidation, but no evidence for artifactual DMPO/(•)SO3(-) formation was found if the more potent horseradish peroxidase was used. This is ESR evidence that the Forrester-Hepburn mechanism can occur under mild conditions, depending on the experimental details. This technique can also be used to test for other artifact mechanisms. We investigated the known ene reaction of DBNBS and tryptophan in more detail. We found that a strong artifact signal is induced by light; however, with atypically long incubations, we found that the artifact is also formed thermally.

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