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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Interplay between Antibiotic Efficacy and Drug-Induced Lysis Underlies Enhanced Biofilm Formation at Subinhibitory Drug Concentrations
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Interplay between Antibiotic Efficacy and Drug-Induced Lysis Underlies Enhanced Biofilm Formation at Subinhibitory Drug Concentrations

机译:抗生素疗效与药物诱导的裂解下的相互作用在水下抑中药物浓度下增强生物膜形成

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Subinhibitory concentrations of antibiotics have been shown to enhance biofilm formation in multiple bacterial species. While antibiotic exposure has been associated with modulated expression of many biofilm-related genes, the mechanisms of drug-induced biofilm formation remain a focus of ongoing research efforts and may vary significantly across species. In this work, we investigate antibiotic-induced biofilm formation in Enterococcus faecalis, a leading cause of nosocomial infections. We show that biofilm formation is enhanced by subinhibitory concentrations of cell wall synthesis inhibitors but not by inhibitors of protein, DNA, folic acid, or RNA synthesis. Furthermore, enhanced biofilm is associated with increased cell lysis, increases in extracellular DNA (eDNA) levels, and increases in the density of living cells in the biofilm. In addition, we observe similar enhancement of biofilm formation when cells are treated with nonantibiotic surfactants that induce cell lysis. These findings suggest that antibiotic-induced biofilm formation is governed by a trade-off between drug toxicity and the beneficial effects of cell lysis. To understand this trade-off, we developed a simple mathematical model that predicts changes in antibiotic-induced biofilm formation due to external perturbations, and we verified these predictions experimentally. Specifically, we demonstrate that perturbations that reduce eDNA (DNase treatment) or decrease the number of living cells in the planktonic phase (a second antibiotic) decrease biofilm induction, while chemical inhibitors of cell lysis increase relative biofilm induction and shift the peak to higher antibiotic concentrations. Overall, our results offer experimental evidence linking cell wall synthesis inhibitors, cell lysis, increased eDNA levels, and biofilm formation in E. faecalis while also providing a predictive quantitative model that sheds light on the interplay between cell lysis and antibiotic efficacy in developing biofilms.
机译:已经显示抗生素的产量浓度,以增强多种细菌种类的生物膜形成。虽然抗生素暴露已经与许多生物膜相关基因的调节表达有关,但是药物诱导的生物膜形成机制仍然是正在进行的研究努力的焦点,并且在物种上可能会显着变化。在这项工作中,我们研究了肠球菌粪便中的抗生素诱导的生物膜形成,是医院感染的主要原因。我们表明,通过蛋白质,DNA,叶酸或RNA合成的抑制剂,细胞壁合成抑制剂的抑制剂增强了生物膜形成。此外,增强的生物膜与增加的细胞裂解相关,细胞外DNA(EDNA)水平的增加,并增加生物膜中的活细胞密度。此外,当用诱导细胞裂解的非抗生素表面活性剂处理细胞处理细胞时,我们观察到类似的增强生物膜形成。这些研究结果表明,抗生素诱导的生物膜形成受药物毒性之间的权衡和细胞裂解的有益作用的折衷。为了了解这种权衡,我们开发了一种简单的数学模型,预测由于外部扰动引起的抗生素诱导的生物膜形成的变化,我们通过实验验证了这些预测。具体而言,我们证明,减少edna(DNase治疗)或减少浮游相(第二种抗生素)的活细胞数量减少生物膜诱导的扰动,而细胞裂解的化学抑制剂增加了相对生物膜诱导并将峰移至更高的抗生素浓度。总体而言,我们的结果提供了将细胞壁合成抑制剂,细胞裂解,edna水平和Biofilm形成的实验证据,同时还提供了一种预测定量模型,该模型在开发生物膜中的细胞裂解和抗生素功效之间的相互作用。

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