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Study of the Effect of Essential Oil of Salvia glutinosa L. on Microbial Biofilm Formation by Clinical Isolates of Acinetobacter baumannii

机译:Salvia glutinosa L.精油的研究临床分离株对肺杆菌临床分离株的微生物生物膜形成

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Acinetobacter baumannii is becoming a serious concern in the treatment of infections that can develop resistance to many antibiotics. This persistence may be explained by its capacity to form biofilms. In our study, the essential oil (EO) of the Salvia glutinosa plant, was obtained through the hydrodistillation method. Antimicrobial and antibiofilm activities of the EO on the 20 multi-drug resistant (MDR) A.baumannii isolates were researched. Broth microdilution methods were applied for the determination of the antimicrobial activity. For the determined antibiofilm activity, the Minimal Biofilm Inhibition Concentration (MBIC) test was implemented with the microtiter plate method. Photometric assay was applied for the identification of the antioxidant capacity and colorimetric assay was used to specify the cytotoxicity of the EO of S. glutinosa on L929 cells. In our study, Minimal Inhibition Concentration (MIC) and Minimal Bactericidal Concentration (MBC) values between 1.25-2.5 μl/mL and 5-10 μl/mL respectively. MBIC value of the EO was found as 0.3-2.5 μl/mL. IC_(50)==24.4±0.66 μl/mL was found as the antioxidant capacity of the EO. At 25%, 12.5% and 6.25% EO concentrations, no cytotoxicity appeared for the fibroblast cells in terms of the cytotoxic activities (p>0.05). According to the findings obtained in our study, antibiofilm, antimicrobial and antioxidant activities of the S. glutinosa EO seem remarkable. These findings seem promising for the development of potential phytotherapeutic agents in the treatment of the multi-drug resistance (MDR) A.baumannii infections.
机译:AcineTobacterBaumannii在治疗可能产生对许多抗生素抗性的感染方面是一个严重的关注。这种持续存在可以通过其形成生物膜的能力来解释。在我们的研究中,通过氢化物方法获得了Salvia glutinosa植物的精油(EO)。研究了EO对20种多药物抗药性(MDR)A.Baumannii分离株的抗菌剂和抗菌剂活性。将肉汤微脱离方法应用用于测定抗微生物活性。对于确定的抗生素活性,用微量滴定板法实施最小的生物膜抑制浓度(MBIC)试验。施用光度测定用于鉴定抗氧化能力和比色测定用于在L929细胞上指定S.Glutinosa的EO的细胞毒性。在我们的研究中,分别最小的抑制浓度(MIC)和最小的杀菌浓度(MBC)分别在1.25-2.5μl/ ml和5-10μl/ ml之间。 EO的MBIC值被发现为0.3-2.5μl/ ml。 IC_(50)== 24.4±0.66μL/ ml作为EO的抗氧化能力。在25%,12.5%和6.25%的EO浓度下,在细胞毒性活性方面没有针对成纤维细胞的细胞毒性(P> 0.05)。根据我们的研究中获得的研究结果,S. glutinosa eo的抗血糖,抗微生物和抗氧化活性看起来显着。这些发现似乎对潜在的植物治疗剂进行了治疗多药物抗性(MDR)A.Baumannii感染的开发。

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