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自由基反应研究中的化学发光检测。第1部分。

Chemiluminescence Detection in the Study of Free-Radical Reactions. Part 1.

作者信息

Romodin L A

机构信息

Moscow State Academy of Veterinary Medicine and Biotechnology - MVA named after K.I. Skryabin, Departmental affiliation is Ministry of Agriculture of the Russian Federation, Moscow, 109472 Russia.

出版信息

Acta Naturae. 2021 Jul-Sep;13(3):90-100. doi: 10.32607/actanaturae.10912.

Abstract

The present review, consisting of two parts, considers the application of the chemiluminescence detection method in evaluating free radical reactions in biological model systems. The first part presents a classification of experimental biological model systems. Evidence favoring the use of chemiluminescence detection in the study of free radical reactions, along with similar methods of registering electromagnetic radiation as electron paramagnetic resonance, spectrophotometry, detection of infrared radiation (IR spectrometry), and chemical methods for assessing the end products of free radical reactions, is shown. Chemiluminescence accompanying free radical reactions involving lipids has been the extensively studied reaction. These reactions are one of the key causes of cell death by either apoptosis (activation of the cytochrome complex with cardiolipin) or ferroptosis (induced by free ferrous ions). The concept of chemiluminescence quantum yield is also discussed in this article. The second part, which is to be published in the next issue, analyzes the application of chemiluminescence detection using luminescent additives that are called activators, a.k.a. chemiluminescence enhancers, and enhance the emission through the triplet-singlet transfer of electron excitation energy from radical reaction products, followed by light emission with a high quantum yield.

摘要

本综述由两部分组成,探讨了化学发光检测方法在评估生物模型系统中自由基反应的应用。第一部分介绍了实验性生物模型系统的分类。展示了支持在自由基反应研究中使用化学发光检测的证据,以及类似的记录电磁辐射的方法,如电子顺磁共振、分光光度法、红外辐射检测(红外光谱法),还有评估自由基反应终产物的化学方法。涉及脂质的自由基反应伴随的化学发光是已被广泛研究的反应。这些反应是细胞通过凋亡(细胞色素与心磷脂复合物的激活)或铁死亡(由游离亚铁离子诱导)死亡的关键原因之一。本文还讨论了化学发光量子产率的概念。第二部分将在下一期发表,分析使用被称为激活剂(又名化学发光增强剂)的发光添加剂进行化学发光检测的应用,这些添加剂通过自由基反应产物的电子激发能的三重态 - 单重态转移来增强发射,随后以高量子产率发光。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d55/8526183/b648708bf764/AN20758251-13-03-090-g001.jpg

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