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香芹酚对口腔致病细菌的抗菌及抗生物膜活性

Antibacterial and Antibiofilm Activity of Carvacrol against Oral Pathogenic Bacteria.

作者信息

Fernández-Babiano Irene, Navarro-Pérez María Luisa, Pérez-Giraldo Ciro, Fernández-Calderón María Coronada

机构信息

Department of Biomedical Science, Area of Microbiology, University of Extremadura, 06006 Badajoz, Spain.

University Institute of Extremadura Sanity Research (INUBE), 06006 Badajoz, Spain.

出版信息

Metabolites. 2022 Dec 13;12(12):1255. doi: 10.3390/metabo12121255.

Abstract

Faced with the current situation of high rates of microbial resistance, together with the scarcity of new antibiotics, it is necessary to search for and identify new antimicrobials, preferably natural, to alleviate this situation. The aim of this work was to evaluate the antibacterial activity of carvacrol (CAR), a phenolic compound of essential oils, against pathogenic microorganisms causing oral infections, such as and , never evaluated before. The minimum inhibitory and the minimum bactericidal concentration were 93.4 μg/mL and 373.6 μg/mL, respectively, for the two strains. The growth kinetics under different concentrations of CAR, as well as the bactericidal power were determined. The subinhibitory concentrations delayed and decreased bacterial growth. Its efficacy on mature biofilms was also tested. Finally, the possible hemolytic effect of CAR, not observable at the bactericidal concentrations under study, was evaluated. Findings obtained point to CAR as an excellent alternative agent to safely prevent periodontal diseases. In addition, it is important to highlight the use of an experimental methodology that includes dual-species biofilm and subinhibitory concentration models to determine optimal CAR treatment concentrations. Thus, CAR could be used preventively in mouthwashes or biomaterials, or in treatments to avoid existing antibiotic resistance.

摘要

面对当前微生物耐药率高以及新抗生素稀缺的现状,有必要寻找和鉴定新的抗菌剂,最好是天然抗菌剂,以缓解这种情况。这项工作的目的是评估香芹酚(CAR)(一种精油中的酚类化合物)对引起口腔感染的致病微生物(如 和 ,此前从未评估过)的抗菌活性。对于这两种菌株,最低抑菌浓度和最低杀菌浓度分别为93.4μg/mL和373.6μg/mL。测定了不同浓度CAR下的生长动力学以及杀菌能力。亚抑菌浓度延迟并降低了细菌生长。还测试了其对成熟生物膜的功效。最后,评估了CAR在研究的杀菌浓度下未观察到的可能溶血作用。所得结果表明CAR是安全预防牙周疾病的极佳替代剂。此外,重要的是要强调使用包括双物种生物膜和亚抑菌浓度模型在内的实验方法来确定最佳CAR治疗浓度。因此,CAR可预防性地用于漱口水或生物材料中,或用于治疗以避免现有的抗生素耐药性。

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