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Evaluating the antimicrobial potential of green cardamom essential oil focusing on quorum sensing inhibition of Chromobacterium violaceum

机译:评估绿豆蔻精油的抗菌潜力重点在于抑制紫质杆菌的群体感应

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摘要

Spices are well known for their taste and flavor imparting properties. Green cardamom (Elletaria cardamomum), a herb spice belongs to family Zingiberaceae. In current study, GC–MS analysis of green cardamom essential oil (CEO) resulted in identification of twenty-six compounds with α-terpinyl acetate (38.4%), 1,8-cineole (28.71%), linalool acetate (8.42%), sabinene (5.21%), and linalool (3.97%) as major bioactive components. Present study also described the antimicrobial properties like zone of inhibition, minimum inhibitory concentration against microbial strains with special emphasis on quorum sensing inhibition. Disk diffusion assay showed that C. albicans and S. mutans were the most sensitive microorganisms followed by S. aureus, L. monocytogenes, B. cereus and S. typhimurium sensor strains, respectively. Whilst P. aeruginosa was found most resistant strain as CEO did not inhibited its growth. The minimum inhibitory concentration (MIC) values of CEO against tested strains were 10 ± 0.00 mg/mL against S. typhimurium, S. aureus and 5 ± 0.00 mg/mL against S. mutans, C. albicans strains, respectively. Regarding quorum sensing inhibition the tested concentrations 0.625 and 0.313 mg/mL of CEO inhibited violacein production with very little effect on growth of C. violaceum. Conclusively, study proved that quorum sensing inhibition values of CEO were much lower compared to MIC revealed values. Hence, cardamom bioactive constituents can effectively be used to develop novel antimicrobial drugs against conventional antibiotics.
机译:香料因其味道和风味赋予特性而众所周知。绿豆蔻(Elletaria cardamomum),一种香料,属于姜科。在当前的研究中,对绿色豆蔻精油(CEO)进行GC-MS分析,鉴定出26种化合物,其中包括乙酸α-叔丁基酯(38.4%),1,8-桉树脑(28.71%),乙酸芳樟醇(8.42%) ,沙宾烯(5.21%)和芳樟醇(3.97%)作为主要生物活性成分。本研究还描述了抗菌特性,如抑制区域,对微生物菌株的最低抑制浓度,特别强调了群体感应抑制。磁盘扩散分析表明,白色念珠菌和变形链球菌是最敏感的微生物,其次是金黄色葡萄球菌,单核细胞增生李斯特菌,蜡状芽孢杆菌和鼠伤寒沙门氏菌传感器菌株。尽管发现铜绿假单胞菌的耐药性最强,因为CEO并未抑制其生长。 CEO对测试菌株的最小抑菌浓度(MIC)值分别为鼠伤寒沙门氏菌,金黄色葡萄球菌和变形链球菌,白色念珠菌菌株的10±0.00 mg / mL和5±0.00 mg / mL。关于群体感应抑制,测试浓度为0.625和0.313 mg / mL的CEO抑制了紫胶素的产生,而对紫胶衣藻的生长影响很小。最终,研究证明,CEO的群体感应抑制值比MIC揭示值低得多。因此,豆蔻的生物活性成分可以有效地用于开发针对常规抗生素的新型抗菌药物。

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