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阿曼蜂胶:化学剖析、抗菌活性及新的蜂胶植物来源

Omani propolis: chemical profiling, antibacterial activity and new propolis plant sources.

作者信息

Popova Milena, Dimitrova Rosa, Al-Lawati Hassan Talib, Tsvetkova Iva, Najdenski Hristo, Bankova Vassya

机构信息

Institute of Organic Chemistry with Centre of Phytochemistry, Bulgarian Academy of Sciences, Sofia 1113, Bulgaria.

出版信息

Chem Cent J. 2013 Sep 22;7(1):158. doi: 10.1186/1752-153X-7-158.

Abstract

BACKGROUND

Propolis (bee glue) is a resinous honeybee product having a long history of application in many countries as a traditional remedy for treating wounds, burns, soar throat, stomach disorders, etc. It has been proved to possess beneficial biological effects, including antimicrobial, antioxidant, anti-inflammatory, cytotoxic, antiulcer, and many others. Bees gather propolis from diverse resinous plant parts and in different phytogeographic regions its chemical composition might vary significantly. In this article we report the results of the first study on the chemical profiles of propolis from Oman, its plant origin and antibacterial activity.

RESULTS

The chemical profiles of Omani propolis extracts were obtained by GC-MS analysis after silylation. Over 50 individual compounds were identified in the samples, belonging to different compound types: sugars, polyols, hydroxy acids, fatty acids, cardanols and cardols, anacardic acids, flavan derivatives, triterpenes, prenylated flavanones and chalcones. The profiles were dissimilar from other known propolis types. They demonstrate that although Oman is not a large country, the plant sources of propolis vary significantly, even in the same apiary and the same season. Based on chemical profiles, and isolation and identification of major marker compounds (new propolis constituents), new plant sources of propolis were found: Azadiracta indica (neem tree) and Acacia spp. (most probably A. nilotica). The ethanol extracts of the studied propolis samples demonstrated activity against S. aureus (MIC < 100 μg. mL-1) and E. coli (MIC < 380 μg. mL-1).

CONCLUSION

Omani propolis is different form the known propolis types and demonstrates significant chemical diversity. Its most important plant source is the resin of Azadirachta indica, and as a result its typical components are С5-prenyl flavanones. Other plant sources have been identified, too, playing some role in resin collection by bees in Oman: Acacia spp. (most probably A. nilotica) and Mangifera indica. The results demonstrate also the potential of Omani propolis as antimicrobial.

摘要

背景

蜂胶是一种树脂状的蜜蜂产品,在许多国家作为治疗伤口、烧伤、喉咙痛、胃部疾病等的传统药物已有悠久的应用历史。已证明它具有有益的生物学作用,包括抗菌、抗氧化、抗炎、细胞毒性、抗溃疡等多种作用。蜜蜂从不同的树脂植物部位采集蜂胶,在不同的植物地理区域,其化学成分可能有显著差异。在本文中,我们报告了关于阿曼蜂胶的化学特征、植物来源和抗菌活性的首次研究结果。

结果

通过硅烷化后的气相色谱 - 质谱分析获得了阿曼蜂胶提取物的化学特征。在样品中鉴定出了50多种单个化合物,属于不同的化合物类型:糖类、多元醇、羟基酸、脂肪酸、腰果酚和腰果醇、漆树酸、黄烷衍生物、三萜类、异戊烯基黄酮和查耳酮。这些特征与其他已知的蜂胶类型不同。它们表明,尽管阿曼不是一个大国,但即使在同一个养蜂场和同一季节,蜂胶的植物来源也有很大差异。基于化学特征以及主要标记化合物(新的蜂胶成分)的分离和鉴定,发现了新的蜂胶植物来源:印楝(印度楝树)和金合欢属植物(很可能是阿拉伯胶树)。所研究的蜂胶样品的乙醇提取物对金黄色葡萄球菌(MIC < 100 μg·mL-1)和大肠杆菌(MIC < 380 μg·mL-1)具有活性。

结论

阿曼蜂胶与已知的蜂胶类型不同,具有显著的化学多样性。其最重要的植物来源是印楝的树脂,因此其典型成分是С5 - 异戊烯基黄酮。还鉴定出了其他植物来源,它们在阿曼蜜蜂采集树脂过程中也发挥了一定作用:金合欢属植物(很可能是阿拉伯胶树)和芒果。结果还证明了阿曼蜂胶的抗菌潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40f9/3851436/4203d459dedf/1752-153X-7-158-1.jpg

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