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Detection and characterisation of radicals using electron paramagnetic resonance (EPR) spin trapping and related methods

机译:使用电子顺磁共振(EPR)自旋捕获和相关方法检测和表征自由基

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摘要

Electron paramagnetic resonance (EPR) spectroscopy (also known as electron spin resonance, ESR, or electron magnetic resonance, EMR, spectroscopy) is often described as the "gold standard" for the detection and characterisation of radicals in chemical, biological and medical systems. The article reviews aspects of EPR spectroscopy and discusses how this methodology and related techniques can be used to obtain useful information from biological systems. Consideration is given to the direct detection of radicals, the use of spin traps and the detection of nitric oxide, and the advantages and pitfalls of various approaches. When used with care, this technique can provide a huge amount of valuable data on the presence of radicals, their identity and information on their concentration, structure, mobility and interactions. It is however a technique that has limitations, and the novice user needs to understand the various pitfalls and shortcomings of the method to avoid making significant errors. (C) 2016 Elsevier Inc. All rights reserved.
机译:电子顺磁共振(EPR)光谱(也称为电子自旋共振,ESR或电子磁共振,EMR,光谱学)通常被描述为“金标准”,用于检测和表征化学,生物和医疗系统中的自由基。本文审查了EPR光谱的方面,并讨论了如何使用这种方法和相关技术来获取生物系统中的有用信息。考虑直接检测自由基,使用旋转陷阱和检测一氧化氮,以及各种方法的优点和缺陷。当小心使用时,该技术可以在存在激进,其身份和浓度,结构,移动性和相互作用的基础上提供大量有价值的数据。然而,这是一种有局限性的技术,新手用户需要了解方法的各种陷阱和缺点,以避免产生重大错误。 (c)2016年Elsevier Inc.保留所有权利。

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