柠檬香茅(Cymbopogon citratus)的药理特性综述--它是一种很有前景的生物活性化合物来源

Ahmed Tazi , Abdellah Zinedine , João Miguel Rocha , Faouzi Errachidi
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引用次数: 0

摘要

尽管在柠檬香茅(Cymbopogon citratus DC.)中发现了大量黄酮类等化学物质,而且种类繁多,但现有数据却很零散。它们因提取物类型和植物产地的不同而产生的差异及其对生物活性的影响也未得到深入讨论。因此,本文对柠檬香蒲提取物中的生物活性化合物(包括类黄酮含量)及其相关生物特性进行了深入探讨。记录的数据显示,最近的研究对柠檬香蒲各种提取物中的类黄酮进行了定性和定量分析。现有文献表明,根据植物使用部位的不同,化学成分也有很大差异。不过,关于气候变化和其他环境对黄酮类化合物的数量和质量的影响的数据尚未获得。另一方面,所记录的类黄酮具有广泛的药理特性,包括抗氧化、抗炎、抗微生物和抗糖尿病作用,这些作用因类黄酮的种类而异。从该植物中提取的黄酮类化合物尚未研究出其他特性,如抗癌、镇痛和利尿活性,因此需要进行更深入的研究,以优化生物大分子黄酮类化合物的提取,然后将其应用于最具破坏性的疾病和病原体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review on the pharmacological properties of lemongrass (Cymbopogon citratus) as a promising source of bioactive compounds

Despite the quantities and diversity of chemical compounds such as flavonoids discovered in lemongrass (Cymbopogon citratus DC.), available data are fragmentary. Their variation depending on the type of extract and origin of the plant and their effect on biological activities are not deeply discussed. Therefore, this paper provides a critical discussion of bioactive compounds including flavonoid content in extracts of Cymbopogon citratus, and their associated biological properties. Recorded data showed that recent studies have addressed the flavonoids qualitatively and quantitatively in various extracts of C. citratus. Existing literature clarified a significant variation of chemicals depending on the used parts of the plants. However, data on the effects of climate change and other environmental on the quantity and quality of flavonoids are not yet available. On the other hand, the recorded flavonoids were associated with a wide range of pharmacological properties including antioxidant, anti-inflammation, anti-microbial, and anti-diabetic effects, which are variable depending on the types of flavonoids. Other properties such as anticancer, analgesic, and diuretic activities are not yet investigated in the flavonoids extracted from the plant, thus more advanced studies are needed to optimize the extraction of biomolecules counting flavonoids, and then apply them to the most devastating diseases and pathogens.

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