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大麻酚类化合物及其生物活性。

Cannabis Phenolics and their Bioactivities.

机构信息

Department of Pharmaceutical Sciences, University of Piemonte Orientale, Novara, Italy.

Department of Health Sciences, University of Piemonte Orientale, Novara, Italy.

出版信息

Curr Med Chem. 2018;25(10):1160-1185. doi: 10.2174/0929867324666170810164636.

Abstract

BACKGROUND

Although Cannabis sativa L. is one of the most versatile plant species with multipurpose use both as medical, alimentary source and as psychoactive abuse, its biomedical relevance focused the attention on major cannabinoids. Phytochemical characterization of cannabis highlights the presence of various non-cannabinoids constituents including flavonoids, spiroindans, dihyrostilbenes, dihydrophenanthrenes, lignanamides, steroids and alkaloids. This review aims to identify polyphenols present in this plant, their biosynthesis, their bioactivities and their synthesis, when this occurred.

METHODS

We undertook a systematic research focused on bibliographic databases including all noncannabinoids phenolics in various C. sativa strains from their isolation, structural elucidation, their biological activity to their synthesis.

RESULT

Nevertheless, attention has so far been focused only on cannabinoids (more than one hundred isolated), cannabis is a complex plant able to produce more than 480 chemical entities that represent almost all of the different biogenetic classes. Regarding phenolic compounds, the plant biosynthesises a plethora of unique non-cannabinoids second metabolites, such as prenylated flavonoids, stilbenoids derivatives and lignanammides.

CONCLUSION

Cannabis is a plant with high pharmacological and nutrition values, its potentialities and applications are not only circumscribed to cannabinoids biological activities, but also defined by noncannabinoid compounds. The combination of other cannabinoids together with noncannabinoid components could enhance the beneficial effects of THC and could reduce undesirable side effects.

摘要

背景

尽管大麻(Cannabis sativa L.)是一种用途广泛的植物,具有药用、食用和致幻滥用等多种用途,但由于其生物医学相关性,人们主要关注大麻素。大麻植物的化学特征突出了各种非大麻素成分的存在,包括类黄酮、螺吲哚、二羟基芐基二苯并二氢吡喃、二氢菲、木脂酰胺、甾体和生物碱。本综述旨在确定该植物中存在的多酚、它们的生物合成、生物活性及其合成情况(如果有)。

方法

我们进行了一项系统研究,重点关注包括各种大麻素在内的大麻素非大麻素酚类物质的文献数据库,从它们的分离、结构阐明、生物活性到合成。

结果

然而,迄今为止,人们的注意力只集中在大麻素上(已经分离出 100 多种),而大麻是一种能够产生 480 多种化学物质的复杂植物,这些物质几乎代表了所有不同的生物发生类群。关于酚类化合物,植物生物合成了大量独特的非大麻素次生代谢物,如prenylated flavonoids、stilbenoids 衍生物和 lignanammides。

结论

大麻是一种具有高药理和营养价值的植物,其潜力和应用不仅限于大麻素的生物活性,还取决于非大麻素化合物。其他大麻素与非大麻素成分的结合可以增强 THC 的有益作用,并减少不良副作用。

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