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Analysis of protein carbonylation - pitfalls and promise in commonly used methods

机译:蛋白质羰基化分析-常用方法的陷阱和希望

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摘要

Oxidation of proteins has received a lot of attention in the last decades due to the fact that they have been shown to accumulate and to be implicated in the progression and the pathophysiology of several diseases such as Alzheimer, coronary heart diseases, etc. This has also resulted in the fact that research scientists are becoming more eager to be able to measure accurately the level of oxidized protein in biological materials, and to determine the precise site of the oxidative attack on the protein, in order to get insights into the molecular mechanisms involved in the progression of diseases. Several methods for measuring protein carbonylation have been implemented in different laboratories around the world. However, to date no methods prevail as the most accurate, reliable, and robust. The present paper aims at giving an overview of the common methods used to determine protein carbonylation in biological material as well as to highlight the limitations and the potential. The ultimate goal is to give quick tips for a rapid decision making when a method has to be selected and taking into consideration the advantage and drawback of the methods.
机译:蛋白质的氧化在过去的几十年中受到了广泛的关注,因为事实表明它们已经积累并且与多种疾病的发展和病理生理有关,例如阿尔茨海默氏病,冠心病等。结果是,研究科学家变得更加渴望能够准确地测量生物材料中氧化蛋白质的水平,并确定对蛋白质的氧化攻击的精确位置,以便深入了解所涉及的分子机制。在疾病的发展中。在世界各地的不同实验室中已经采用了几种测量蛋白质羰基化的方法。但是,迄今为止,没有一种方法能胜任最准确,可靠和可靠的方法。本文旨在概述确定生物材料中蛋白质羰基化的常用方法,并强调其局限性和潜力。最终目标是为必须选择一种方法时快速做出决策提供快速提示,并考虑到这些方法的优缺点。

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