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Exploring Common Culinary Herbs and Spices as Potential Anti-Quorum Sensing Agents

机译:探索常见的烹饪草药和香料作为潜在的抗法定数量的感应剂

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摘要

Quorum sensing controls bacterial pathogenesis and virulence; hence, interrupting this system renders pathogenic bacteria non-virulent, and presents a novel treatment for various bacterial infections. In the search for novel anti-quorum sensing (AQS) compounds, 14 common culinary herbs and spices were screened for potential antipathogenicity activity against Chromobacterium violaceum ATCC 12472. Extracts of Glycyrrhiza glabra (liquorice), Apium graveolens (celery), Capsicum annuum (cayenne pepper) and Syzygium anisatum (aniseed) demonstrated good AQS potential, yielding opaque halo zones ranging from 12–19 mm diameter at sub-minimum inhibitory concentrations (0.350–4.00 mg/mL). For the same species, the percentage reduction in violacein production ranged from 56.4 to 97.3%. Zones with violacein inhibitory effects were evident in a celery extract analysed using high performance thin layer chromatography-bio-autography. The major active compound was isolated from celery using preparative-high performance liquid chromatography-mass spectrometry and identified using gas chromatography-mass spectrometry (GC-MS) as 3-n-butyl-4,5-dihydrophthalide (sedanenolide). Potent opaque zones of inhibition observed on the HPTLC-bio-autography plate seeded with C. violaceum confirmed that sedanenolide was probably largely responsible for the AQS activity of celery. The bacteriocidal properties of many herbs and spices are reported. This study, however, was focussed on AQS activity, and may serve as initial scientific validation for the anti-infective properties ascribed to several culinary herbs and spices.
机译:群体感应控制细菌的发病机理和毒力。因此,中断该系统使致病细菌无毒,并提出了针对各种细菌感染的新方法。在寻找新的抗群体感应(AQS)化合物的过程中,筛选了14种常见的烹饪草药和香料,以对抗紫罗兰色杆菌ATCC 12472的潜在致病性。辣椒)和茴香(Syzygium anisatum)(大料)表现出良好的AQS潜力,在最小抑菌浓度(0.350-4.00 mg / mL)下产生不透明的晕圈区域,直径范围为12–19 mm。对于同一物种,紫胶素生产的减少百分比范围为56.4%至97.3%。在使用高效薄层色谱-生物自显影技术分析的芹菜提取物中,明显具有紫丁香素抑制作用的区域。使用制备型高效液相色谱-质谱法从芹菜中分离出主要活性化合物,并使用气相色谱-质谱法(GC-MS)将其鉴定为3-正丁基-4,5-二氢邻苯二甲酰亚胺(Sedanenolide)。在接种了紫色假丝酵母的HPTLC-生物自显影平板上观察到的强效不透明抑制区域证实,sedanenolide可能对芹菜的AQS活性起很大作用。据报道许多草药和香料的杀菌特性。但是,这项研究的重点是AQS活性,可以作为对几种烹饪草药和香料的抗感染特性的初步科学验证。

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