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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Optimal antimicrobial catheter lock solution, using different combinations of minocycline, EDTA, and 25-percent ethanol, rapidly eradicates organisms embedded in biofilm.
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Optimal antimicrobial catheter lock solution, using different combinations of minocycline, EDTA, and 25-percent ethanol, rapidly eradicates organisms embedded in biofilm.

机译:使用米诺环素,EDTA和25%乙醇的不同组合,最佳的抗菌导管锁定解决方案可以快速消除生物膜中嵌入的生物。

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Antimicrobial lock solutions may be needed to salvage indwelling catheters in patients requiring continuous intravenous therapy. We determined the activity of minocycline, EDTA, and 25% ethanol, alone or in combination, against methicillin-resistant Staphylococcus aureus and Candida parapsilosis catheter-related bloodstream infection strains in two established models of biofilm colonization. Biofilm-colonized catheter segments from a modified Robbins device and a silicone disk biofilm colonization model were exposed to these antimicrobial agents for 15 or 60 min, respectively. After exposure, segments were sonicated and cultured. To determine regrowth after incubation at 37 degrees C, following the brief exposure to the antimicrobial agents, an equal number of segments were washed, reincubated for 24 h, and then sonicated and cultured. The triple combination of minocycline-EDTA (M-EDTA) in 25% ethanol was the only antimicrobial lock solution that completely eradicated S. aureus and C. parapsilosis in biofilm of all segments tested in the two models, and it completely prevented regrowth. In addition, M-EDTA in 25% ethanol was significantly more effective in rapidly eradicating the growth or regrowth of methicillin-resistant S. aureus and C. parapsilosis biofilm colonization in the two models than the other solutions--minocycline, EDTA, M-EDTA, 25% ethanol, and EDTA in ethanol. We conclude that M-EDTA in 25% ethanol is highly effective at rapidly eradicating S. aureus and C. parapsilosis embedded in biofilm adhering to catheter segments.
机译:在需要连续静脉治疗的患者中,可能需要使用抗菌锁解决方案来挽留留置导管。我们确定了在两个已建立的生物膜定殖模型中,米诺环素,EDTA和25%乙醇(单独或联合使用)对耐甲氧西林的金黄色葡萄球菌和副念珠菌导管相关的血流感染菌株的活性。将来自改良型Robbins装置的生物膜定殖的导管段和硅胶盘生物膜定殖模型分别暴露于这些抗菌剂15分钟或60分钟。暴露后,将片段超声处理并培养。为了确定在37℃温育后的短暂生长,在短暂暴露于抗微生物剂之后,将相等数量的片段洗涤,再温育24 h,然后进行超声处理和培养。米诺环素-EDTA(M-EDTA)在25%乙醇中的三重组合是唯一能够彻底根除两个模型中测试的所有片段的生物膜中金黄色葡萄球菌和副枝梭菌的抗菌锁定溶液,并且完全防止了再生。此外,在两种模型中,在25%乙醇中的M-EDTA在快速根除耐甲氧西林的金黄色葡萄球菌和副C. parapsilosis生物膜定殖方面比在其他溶液(米诺环素,EDTA,M- EDTA,25%乙醇和EDTA乙醇溶液。我们得出的结论是,含25%乙醇的M-EDTA在快速根除埋在粘附于导管段的生物膜中的金黄色葡萄球菌和副枝梭状芽胞杆菌方面非常有效。

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