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理论预测研究对橄榄树产品和副产物中生物活性次级代谢产物抗氧化活性评估的贡献。

The Contribution of Theoretical Prediction Studies to the Antioxidant Activity Assessment of the Bioactive Secoiridoids Encountered in Olive Tree Products and By-Products.

机构信息

Laboratory of Food Chemistry and Technology, School of Chemistry, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.

出版信息

Molecules. 2023 Feb 28;28(5):2267. doi: 10.3390/molecules28052267.

Abstract

Assessment of the antioxidant activity of different types of natural compounds is a complex research area that encompasses various in vitro tests and in vivo studies. Sophisticated modern analytical tools permit the unambiguous characterization of the compounds present in a matrix. The contemporary researcher, knowing the chemical structure of the compounds present, can carry out quantum chemical calculations that provide important physicochemical information assisting the prediction of antioxidant potential and the mechanism behind the activity of target compounds before further experimentation. The efficiency of calculations is steadily improved due to the rapid evolution of both hardware and software. It is possible, consequently, to study compounds of medium or even larger size, incorporating also models that simulate the liquid phase (solution). This review contributes to the establishment of theoretical calculations as an inherent part of the antioxidant activity assessment process, having as a case study the complex mixtures of olive bioactive secoiridoids (oleuropein, ligstroside, and related compounds). The literature indicates great variability in theoretical approaches and models used so far for only a limited number of this group of phenolic compounds. Proposals are made for standardization of methodology (reference compounds, DFT functional, basis set size, and solvation model) to facilitate comparisons and communication of findings.

摘要

评估不同类型天然化合物的抗氧化活性是一个复杂的研究领域,涵盖了各种体外测试和体内研究。复杂的现代分析工具允许对基质中存在的化合物进行明确的表征。当代研究人员,了解存在的化合物的化学结构,可以进行量子化学计算,提供重要的物理化学信息,协助预测抗氧化潜力和目标化合物活性背后的机制,然后再进行进一步的实验。由于硬件和软件的快速发展,计算的效率不断提高。因此,有可能研究中等大小甚至更大的化合物,还可以包括模拟液相(溶液)的模型。本综述有助于将理论计算确立为抗氧化活性评估过程的固有部分,以橄榄生物活性次级代谢产物(橄榄苦苷、橄榄苦苷配基及相关化合物)的复杂混合物作为研究案例。文献表明,迄今为止,对于这组酚类化合物中的少数几种,理论方法和模型的使用存在很大的可变性。提出了标准化方法(参考化合物、DFT 功能、基组大小和溶剂化模型)的建议,以促进比较和结果的交流。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f7d/10005156/4f0965cccd7d/molecules-28-02267-g001.jpg

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