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随机选择的植物次生代谢物和植物提取物的抗氧化和促氧化活性的同时测定。

Simultaneously Determined Antioxidant and Pro-Oxidant Activity of Randomly Selected Plant Secondary Metabolites and Plant Extracts.

机构信息

Department of Chemistry and Environmnetal Sciences, Faculty of Natural Sciences, University of Ss. Cyril and Methodius in Trnava, Nám. J. Herdu 2, 917 01 Trnava, Slovakia.

National Agricultural and Food Centre, Hlohovecká 2, 951 41 Lužianky, Slovakia.

出版信息

Molecules. 2023 Sep 30;28(19):6890. doi: 10.3390/molecules28196890.

Abstract

Oxidative stress is a well-known phenomenon arising from physiological and nonphysiological factors, defined by the balance between antioxidants and pro-oxidants. While the presence and uptake of antioxidants are crucial, the pro-oxidant effects have not received sufficient research attention. Several methods for assessing pro-oxidant activity, utilizing various mechanisms, have been published. In this paper, we introduce a methodology for the simultaneous determination of antioxidant and pro-oxidant activity on a single microplate in situ, assuming that the FRAP method can measure both antioxidant and pro-oxidant activity due to the generation of pro-oxidant Fe ions in the Fenton reaction. Systematic research using this rapid screening method may help to distinguish between compounds with dominant antioxidant efficacy and those with dominant pro-oxidant effects. Our preliminary study has revealed a dominant pro-oxidant effect for compounds with a higher number of oxygen heteroatoms, especially sp2 hybridized compounds (such as those containing keto groups), such as flavonoids and plant extracts rich in these structural types. Conversely, catechins, carotenoids, and surprisingly, extracts from birch leaves and chestnut leaves have demonstrated dominant antioxidant activity over pro-oxidant. These initial findings have sparked significant interest in the systematic evaluation of a more extensive collection of compounds and plant extracts using the developed method.

摘要

氧化应激是一种由生理和非生理因素引起的众所周知的现象,其定义是抗氧化剂和促氧化剂之间的平衡。虽然抗氧化剂的存在和摄取至关重要,但促氧化剂的作用尚未得到足够的研究关注。已经发表了几种利用各种机制评估促氧化剂活性的方法。在本文中,我们介绍了一种在单个微孔板原位同时测定抗氧化剂和促氧化剂活性的方法,假设 FRAP 方法可以测量抗氧化剂和促氧化剂活性,因为在 Fenton 反应中生成了促氧化剂 Fe 离子。使用这种快速筛选方法进行系统研究可能有助于区分具有主要抗氧化功效的化合物和具有主要促氧化剂作用的化合物。我们的初步研究表明,具有更多氧杂原子的化合物(特别是 sp2 杂化化合物,如含有酮基的化合物)具有促氧化剂的主导作用,如类黄酮和富含这些结构类型的植物提取物。相反,儿茶素、类胡萝卜素,以及令人惊讶的是,桦树叶和栗树叶的提取物在抗氧化方面表现出比促氧化剂更强的活性。这些初步发现引起了人们对使用开发方法对更广泛的化合物和植物提取物进行系统评估的极大兴趣。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aae0/10574746/dc0bc46b5007/molecules-28-06890-g001.jpg

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