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Allium ursinum and Allium oschaninii against Klebsiella pneumoniae and Candida albicans Mono- and Polymicrobic Biofilms in In Vitro Static and Dynamic Models

机译:在体外静态和动态模型中乌森菌和oschaninii菌对肺炎克雷伯菌和白色念珠菌单和多微生物生物膜的影响

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摘要

The present study assesses the in vitro antibiofilm potential activity of extracts of wild and . The active ingredients of the extracts were obtained with a technique named Naviglio (rapid solid–liquid dynamic extraction, RSLDE) which is based on an innovative and green solid–liquid extraction methodology. The extracts were tested against models of mono- and polymicrobial biofilm structures of clinically antibiotic-resistant pathogens, ATCC 10031 and ATCC 90028. Biofilms were studied using a static and a dynamic model (microtiter plates and a CDC reactor) on three different surfaces reproducing what happens on implantable medical devices. Antimicrobic activities were determined through minimum inhibitory concentration (MIC), while antibiofilm activity was assessed by minimum biofilm eradication concentration (MBEC) using a crystal violet (CV) biofilm assay and colony forming unit (CFU) counts. Results showed that both extracts eradicated biofilms of the tested microorganisms well; biofilms on Teflon were more susceptible to extracts than those on polypropylene and polycarbonate, suggesting that when grown on a complex substrate, biofilms may be more tolerant to antibiotics. Our data provide significant advances on antibiotic susceptibility testing of biofilms grown on biologically relevant materials for future in vitro and in vivo applications.
机译:本研究评估了野生和野生提取物的体外抗生物膜潜在活性。提取物的活性成分采用名为Naviglio的技术(快速固液动态萃取,RSLDE)获得,该技术基于创新的绿色固液萃取方法。针对临床耐药性病原体的单微生物和生物微生物生物膜结构模型(ATCC 10031和ATCC 90028)对提取物进行了测试。在三个不同的表面上使用静态和动态模型(微量滴定板和CDC反应器)研究了生物膜。发生在植入式医疗设备上。通过最小抑菌浓度(MIC)确定抗微生物活性,同时使用结晶紫(CV)生物膜测定法和菌落形成单位(CFU)计数通过最小生物膜根除浓度(MBEC)评估抗生物膜活性。结果表明,两种提取物都能很好地消除被测微生物的生物膜。聚四氟乙烯上的生物膜比聚丙烯和聚碳酸酯上的生物膜更容易受到提取物的影响,这表明当在复杂的基质上生长时,生物膜可能更耐受抗生素。我们的数据为在生物相关材料上生长的生物膜的抗生素敏感性测试提供了重大进展,以用于将来的体外和体内应用。

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