Illicium verum L. (Star Anise) Essential Oil: GC/MS Profile, Molecular Docking Study, In Silico ADME Profiling, Quorum Sensing, and Biofilm-Inhibiting Effect on Foodborne Bacteria

茴香脑 群体感应 化学 广告 精油 抗菌剂 香芹酚 生物膜 柠檬烯 细菌 生物信息学 食品科学 生物化学 生物 体外 有机化学 遗传学 基因
作者
Emira Noumi,Iqrar Ahmad,Mohd Adnan,Harun Patel,Abderrahmen Merghni,Najla Haddaji,Nouha Bouali,Khulood Fahad Alabbosh,Adel Kadri,Lucia Caputo,Flavio Polito,Mejdi Snoussi,Vincenzo De Feo
出处
期刊:Molecules [Multidisciplinary Digital Publishing Institute]
卷期号:28 (23): 7691-7691 被引量:31
标识
DOI:10.3390/molecules28237691
摘要

Illicium verum, or star anise, has many uses ranging from culinary to religious. It has been used in the food industry since ancient times. The main purpose of this study was to determine the chemical composition, antibacterial, antibiofilm, and anti-quorum sensing activities of the essential oil (EO) obtained via hydro-distillation of the aerial parts of Illicium verum. Twenty-four components were identified representing 92.55% of the analyzed essential oil. (E)-anethole (83.68%), limonene (3.19%), and α-pinene (0.71%) were the main constituents of I. verum EO. The results show that the obtained EO was effective against eight bacterial strains to different degrees. Concerning the antibiofilm activity, trans-anethole was more effective against biofilm formation than the essential oil when tested using sub-inhibitory concentrations. The results of anti-swarming activity tested against P. aeruginosa PAO1 revealed that I. verum EO possesses more potent inhibitory effects on the swarming behavior of PAO1 when compared to trans-anethole, with the percentage reaching 38% at a concentration of 100 µg/mL. The ADME profiling of the identified phytocompounds confirmed their important pharmacokinetic and drug-likeness properties. The in silico study using a molecular docking approach revealed a high binding score between the identified compounds with known target enzymes involved in antibacterial and anti-quorum sensing (QS) activities. Overall, the obtained results suggest I. verum EO to be a potentially good antimicrobial agent to prevent food contamination with foodborne pathogenic bacteria.
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