The measurement of oxygen-derived free radicals and related substances in medicine.

G F Weber
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Abstract

Due to the high reactivity of the chemical species and the presence of multiple potentially interfering substances, the measurement of oxygen-derived free radicals in biological material requires highly developed techniques. The currently employed methods are reviewed according to the reactions upon which they are based, the assays, possible interferences and their use in medical research. Detection of the emission of light is a very popular method. Although it is in principle unspecific, there are modifications to measure individual radical species. The only direct way to detect radicals is electron spin resonance spectroscopy. Among the specific assays for O2- the reductions of nitroblue tetrazolium or cytochrome c are predominant. For the detection of H2O2 different techniques are employed for either intracellular or extracellular determination. An array of substances has been used for the measurement of OH. Which of them is the most useful depends on the question to be answered. There are also indirect methods that determine free radicals based on chemical modifications caused by them; the most important assays of this kind quantify lipid peroxides. In addition, assays for thiobarbituric acid-reactive substances and DNA strand breaks and interstrand crosslinks are used.

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医学中氧源性自由基及相关物质的测定。
由于化学物质的高反应性和多种潜在干扰物质的存在,测量生物材料中的氧源自由基需要高度发达的技术。根据其所依据的反应、测定、可能的干扰及其在医学研究中的用途,对目前采用的方法进行审查。探测光的发射是一种非常流行的方法。虽然它原则上是不特异的,但有一些修改来测量单个自由基物种。检测自由基的唯一直接方法是电子自旋共振光谱。在O2-的特异性测定中,硝基蓝四氮唑或细胞色素c的还原是主要的。对于H2O2的检测,不同的技术被用于细胞内或细胞外的测定。一系列物质已被用来测量氢氧根。哪一个最有用取决于要回答的问题。也有根据自由基引起的化学修饰来确定自由基的间接方法;这种方法最重要的是定量脂质过氧化物。此外,硫代巴比妥酸反应物质和DNA链断裂和链间交联的测定也被使用。
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