Romodin L A
The A. I. Burnazyan Federal Medical Biophysical Center of the Federal Medical Biological Agency of Russia, Moscow, 123098 Russia.
Acta Naturae. 2022 Jan-Mar;14(1):31-39. doi: 10.32607/actanaturae.11427.
The present review examines the use of chemiluminescence detection to evaluate the course of free radical reactions in biological model systems. The application of the method is analyzed by using luminescent additives that enhance the luminescence thanks to a triplet-singlet transfer of the electron excitation energy from radical reaction products and its emission in the form of light with a high quantum yield; these additives are called chemiluminescence enhancers or activators. Examples of these substances are provided; differences between the so-called chemical and physical enhancers are described; coumarin derivatives, as the most promising chemiluminescence enhancers for studying lipid peroxidation, are considered in detail. The main problems related to the use of coumarin derivatives are defined, and possible ways of solving these problems are presented. Intrinsic chemiluminescence and the mechanism of luminescence accompanying biomolecule peroxidation are discussed in the first part of the review.
本综述探讨了利用化学发光检测来评估生物模型系统中自由基反应进程的方法。通过使用发光添加剂来分析该方法的应用,这些添加剂由于电子激发能从自由基反应产物的三重态 - 单重态转移及其以高量子产率的光形式发射而增强发光;这些添加剂被称为化学发光增强剂或激活剂。文中给出了这些物质的实例;描述了所谓化学增强剂和物理增强剂之间的差异;详细讨论了香豆素衍生物作为研究脂质过氧化最有前景的化学发光增强剂。明确了与使用香豆素衍生物相关的主要问题,并提出了解决这些问题的可能途径。综述的第一部分讨论了固有化学发光以及生物分子过氧化伴随的发光机制。