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Essential Oils and Their Vapors as Potential Antibacterial Agents against Respiratory Tract Pathogens

机译:精油及其蒸气作为呼吸道疾病病原体的潜在抗菌剂

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Increasing appearance of antibiotic-resistant pathogens, which could be one of the major causes of respiratory tract infections, has again drawn attention to natural substances and alternative treatments. Therefore, the aim of the present study was the antibacterial evaluation of cinnamon bark, clove, thyme, citronella, peppermint, Scots pine, and eucalyptus essential oils (EOs) against respiratory tract pathogens such as methicillin-resistant Staphylococcus aureus (MRSA) and Pseudomonas aeruginosa with in vitro vapor phase (VP) and tube dilution (TD) techniques. The chemical and percentage compositions of the EOs were determined by GC-FID and GC-MS analysis. Among the EOs, cinnamon bark was the most effective against all the investigated pathogens (MIC: 31.25-125 mu L/L) in the VP assay, but clove oil presented the best inhibition against MRSA in liquid medium (MIC: 0.1 mg/mL). Thyme oil also showed antibacterial activity against MRSA and the antibiotic-sensitive strain of P. aeruginosa in both methods. In higher concentration, we found that peppermint oil was effective only in vapor form; contrarily, eucalyptus oil was more efficient in liquid medium. Surprisingly, Scots pine did not show any activity in our test systems. These results suggest that EOs could be promising solutions for the problem of antibiotic resistance due to their multiple composition and complex mode of action. However, more in vivo studies are necessary to calculate the effective dose of EOs in patients and determine their possible side effects and toxicity.
机译:增加抗生素抗性病原体的外观,这可能是呼吸道感染的主要原因之一,再次引起天然物质和替代治疗。因此,本研究的目的是肉桂树皮,丁香,百里香,香茅,薄荷,苏格兰松,桉树精油(EOS)的抗菌评估,呼吸道致血剂如甲氧西林葡萄球菌(MRSA)和假单胞菌铜绿假单胞菌与体外气相(VP)和管稀释(TD)技术。通过GC-FID和GC-MS分析测定EOS的化学和百分比组合物。在EOS中,肉桂树皮对VP测定中所有调查的病原体(MIC:31.25-125μl/ L)最有效,但丁香油呈现对液体培养基中MRSA的最佳抑制(MIC:0.1mg / ml )。百里香油还显示出对MRSA的抗菌活性和两种方法中P. Aeruginosa的抗生素敏感菌株。浓度较高,我们发现薄荷油仅在蒸气形状中有效;相反,桉树油在液体培养基中更有效。令人惊讶的是,苏格兰松树没有在测试系统中显示任何活动。这些结果表明,由于其多种组成和复杂的作用方式,EOS可能是对抗生素抗性问题的有希望的解决方案。然而,更多的体内研究是为了计算患者的有效剂量的EOS并确定其可能的副作用和毒性。

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