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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Effect of the essential oils from Piper sp. and blue led lights in the enhancement of the antibiotic activity of drugs against mdr bacterial strains
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Effect of the essential oils from Piper sp. and blue led lights in the enhancement of the antibiotic activity of drugs against mdr bacterial strains

机译:精油从吹笛式液中的影响。 和蓝色LED灯在提高药物对MDR细菌菌株的抗生素活性

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The indiscriminate use of antibiotics has made bacterial resistance an important public health problem, since many antibiotics have become ineffective. Phototherapy can be considered an alternative to reduce the abusive use of antimicrobials, thus impacting microbial resistance. The objective of this study was to determine the chemical profile and to evaluate the effect of blue LED lights on the antibacterial activity of essential oils from Piper species, as well as their aminoglycoside antibiotic activity modulation using the microdilution method to determine the Minimum Inhibitory Concentration (MIC). The antibiotic activity modulating effect of these oils was also determined using the broth microdilution method with 96-well plates which were exposed to LED light for 20 min. Chemical components were characterized by gas chromatography coupled to mass spectrometry, revealing beta-copaen-4-alpha-ol, germacrene A and germacrene B as major essential oil constituents for Piper arboreum (OEPar), Piper aduncum (OEPad) and Piper gaudichaudianum (OEPg), respectively. OEPar obtained a MIC of 512 mu g/mL against Staphylococcus aureus and a MIC >= 1024 mu g/mL against Escherichia coli. OEPad and OEPg showed MIC values >= 1024 mu g/mL against the utilized strains. The essential oils modulated the effect of the antibiotics amikacin and gentamicin, with this effect being potentiated when exposed to blue LED. The blue LED light in the absence of the essential oil also showed an ability to modulate aminoglycoside antibiotic activity in this study, presenting mostly synergistic effects. In conclusion, the results obtained in this study demonstrate that photodynamic therapy using blue LED light interferes with the antibacterial action of P. arboreum, P. aduncum and P. gaudichaudianum essential oils and aminoglycoside antibiotic activity.
机译:抗生素的滥用使用已经使细菌耐受了重要的公共卫生问题,因为许多抗生素都变得无效。光疗可以被认为是减少滥用抗微生物的滥用性的替代方案,从而影响微生物抗性。本研究的目的是确定化学特征,并评估蓝色LED灯对吹笛剂物种精油抗菌活性的影响,以及使用微稀释方法的氨基糖苷抗生素活性调制来确定最小抑制浓度( MIC)。这些油的抗生素活性调节效果也使用肉汤微量稀释方法测定,其中96孔板暴露于LED光线20分钟。化学成分的表征通过气相色谱法偶联至质谱法,将β-Copaen-4-α-OL,Germac rene A和Germac酮B揭示为吹笛者arboreum(op),吹笛者Aduncum(oepad)和吹笛者Gaudichaudianum的主要精油成分(OEPG) ), 分别。将含有512μg/ ml的氨基吡喃葡萄球菌和麦克风=1024μg/ ml的MIC,抵抗大肠杆菌。 OEPAD和OEPG显示出麦克风值> =1024μg/ ml对利用菌株。精油调节抗生素Amikacin和庆大霉素的效果,这种效果在暴露于蓝色LED时具有增强。在没有必需油的情况下,蓝色LED光也表现出调节该研究中的氨基糖苷类抗生素活性的能力,呈现大多是协同效应。总之,本研究中获得的结果表明,使用蓝色LED光的光动力治疗干扰了P.Barroreum,P.Aduncum和P.Gaudichaudianum精油和氨基糖苷类抗生素活性的抗菌作用。

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