Department of Health Sciences, University Magna Graecia, Catanzaro, Italy.
Nat Prod Rep. 2021 Mar 1;38(3):444-469. doi: 10.1039/d0np00084a. Epub 2020 Dec 10.
Covering: 2005 up to 2020Olive bioactive secoiridoids are recognized as natural antioxidants with multiple beneficial effects on human health. Nevertheless, the study of their biological activity has also disclosed some critical aspects associated with their application. Firstly, only a few of them can be extracted in large amounts from their natural matrix, namely olive leaves, drupes, oil and olive mill wastewater. Secondly, their application as preventive agents and drugs is limited by their low membrane permeability. Thirdly, the study of their biological fate after administration is complicated by the absence of pure analytical standards. Accordingly, efficient synthetic methods to obtain natural and non-natural bioactive phenol derivatives have been developed. Among them, semi-synthetic protocols represent efficient and economical alternatives to total synthesis, combining efficient extraction protocols with efficient catalytic conversions to achieve reasonable amounts of active molecules. The aim of this review is to summarize the semi-synthetic protocols published in the last fifteen years, covering 2005 up to 2020, which can produce natural olive bioactive phenols scarcely available by extractive procedures, and new biophenol derivatives with enhanced biological activity. Moreover, the semi-synthetic protocols to produce olive bioactive phenol derivatives as analytical standards are also discussed. A critical analysis of the advantages offered by semi-synthesis compared to classical extraction methods or total synthesis protocols is also performed.
2005 年至 2020 年
橄榄生物活性次级代谢产物被认为是天然抗氧化剂,对人类健康有多种有益作用。然而,对它们生物活性的研究也揭示了一些与它们应用相关的关键方面。首先,只有少数几种可以从其天然基质(橄榄叶、核果、油和橄榄厂废水)中大量提取。其次,由于其膜透过性低,它们作为预防剂和药物的应用受到限制。第三,由于缺乏纯分析标准,在给药后研究其生物命运变得复杂。因此,已经开发出有效的合成方法来获得天然和非天然生物活性酚衍生物。其中,半合成方案代表了总合成的有效和经济替代方案,将有效的提取方案与有效的催化转化相结合,以获得合理数量的活性分子。本综述的目的是总结过去十五年(2005 年至 2020 年)发表的半合成方案,这些方案可以生产通过提取方法难以获得的天然橄榄生物活性酚,以及具有增强生物活性的新型生物酚衍生物。此外,还讨论了用于生产橄榄生物活性酚衍生物作为分析标准的半合成方案。还对半合成与经典提取方法或总合成方案相比所提供的优势进行了批判性分析。