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首页> 外文期刊>Cellular and molecular biology >Modulatory-antibiotic activity of the essential oil from Eucalyptus citriodora against MDR bacterial strains
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Modulatory-antibiotic activity of the essential oil from Eucalyptus citriodora against MDR bacterial strains

机译:来自桉树Citriodora对抗MDR细菌菌株的调节 - 抗生素活性

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The growing number of bacterial strains resistant to therapeutic agents has been surpassing the various antibiotics developed by the chemical and pharmaceutical industries. This problem has driven the development of research using agents with antimicrobial potential, with an emphasis on plant-derived natural products. This study evaluated the chemical compounds present in Eucalyptus citriodora essential oil (EOEc) cultivated in northeastern Brazil and its properties as an antibacterial agent and resistance modifier against methicillin-resistant Staphylococcus aureus (MRSA) and beta-lactamase-producing strains. The EOEc was obtained using the hydrodistillation method, later analyzed by GC/MS, presenting a total of twelve compounds, with citronellal (65.45%); citronellol (14.87%); isopulegol (11.80%) and citronellyl acetate (2.51%) as its main constituents. The microdilution test was used to determine the minimum inhibitory concentration (MIC) and the bacterial resistance modulation of the essential oil. The EOEc did not present significant activity against the tested strains (MIC 1000 mu g mL(-1) ). However, when evaluating the capacity of the EOEc to modify the resistance of S. aureus and E. coli strains to different antimicrobials, synergistic effects were obtained with reduced MIC values for all tested antibiotics being obtained. The EOEc showed antimicrobial and beta-lactam optimizing potential against resistant strains, presenting itself as a possible alternative for the use of these drugs at concentrations lower than those indicated against resistant strains.
机译:越来越多的细菌菌株对治疗药物产生耐药性,已经超过了化学和制药行业开发的各种抗生素。这一问题推动了使用具有抗菌潜力的药物进行研究的发展,重点是植物源性天然产物。本研究评估了在巴西东北部种植的柠檬桉精油(EOEc)中存在的化合物,以及其作为抗甲氧西林金黄色葡萄球菌(MRSA)和β-内酰胺酶产生菌株的抗菌剂和耐药性改进剂的性质。采用水蒸馏法获得EOEc,随后通过GC/MS进行分析,共有12种化合物,其中香茅醛(65.45%);香茅醇(14.87%);主要成分为异戊二醇(11.80%)和香茅烯基乙酸(2.51%)。微量稀释试验用于确定精油的最低抑菌浓度(MIC)和细菌耐药性调节。EOEc对受试菌株没有明显的活性(MIC 1000μg mL(-1))。然而,当评估EOEc改变金黄色葡萄球菌和大肠杆菌菌株对不同抗菌剂的耐药性的能力时,通过降低所有受试抗生素的MIC值,获得了协同效应。EOEc显示了抗菌剂和β-内酰胺对耐药菌株的优化潜力,显示出在低于耐药菌株浓度下使用这些药物的可能替代品。

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