首页> 美国卫生研究院文献>Journal of Antimicrobial Chemotherapy >5-Hydroxyethyl-3-tetradecanoyltetramic acid represents a novel treatment for intravascular catheter infections due to Staphylococcus aureus
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5-Hydroxyethyl-3-tetradecanoyltetramic acid represents a novel treatment for intravascular catheter infections due to Staphylococcus aureus

机译:5-羟乙基-3-十四烷酰基四氢甲基酸是一种由金黄色葡萄球菌引起的血管内导管感染的新型治疗方法

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摘要

>Objectives: Biofilm infections of intravascular catheters caused by Staphylococcus aureus may be treated with catheter lock solutions (CLSs). Here we investigated the antibacterial activity, cytotoxicity and CLS potential of 5-hydroxyethyl-3-tetradecanoyltetramic acid (5HE-C14-TMA) compared with the related compounds 3-tetradecanoyltetronic (C14-TOA) and 3-tetradecanoylthiotetronic (C14-TTA), which are variants of quorum sensing signalling molecules produced by Pseudomonas aeruginosa. >Methods: Antibacterial activity and mechanism of action of 5HE-C14-TMA, C14-TOA and C14-TTA were determined via MIC, bacterial killing, membrane potential and permeability assays. Susceptibility of S. aureus biofilms formed in the presence of plasma in vitro was investigated, MTT cytotoxicity testing was undertaken and cytokine release in human blood upon exposure to 5HE-C14-TMA and/or S. aureus biofilms was quantified. The effectiveness of 5HE-C14-TMA as CLS therapy in vivo was assessed using a rat intravascular catheter biofilm infection model. >Results: MICs of 5HE-C14-TMA, C14-TOA and C14-TTA ranged from 2 to 4 mg/L. 5HE-C14-TMA and C14-TTA were bactericidal; all three compounds perturbed the staphylococcal membrane by increasing membrane permeability, depolarized the transmembrane potential and caused ATP leakage. Cytotoxicity and haemolytic activity were compound and target cell type-dependent. 5HE-C14-TMA reduced S. aureus biofilm viability in a dose-dependent manner in vitro and in vivo and did not trigger release of cytokines in human blood, but inhibited the high levels of IL-8 and TNF-α induced by S. aureus biofilms. >Conclusions: 5HE-C14-TMA, C14-TOA and C14-TTA are membrane-active agents. 5HE-C14-TMA was the most potent, eradicating S. aureus biofilms at 512–1024 mg/L both in vitro and in vivo as a CLS.
机译:>目的:金黄色葡萄球菌引起的血管内导管生物膜感染可用导管锁定液(CLS)进行治疗。在这里,我们研究了5-羟乙基-3-十四烷酰基四酸(5HE-C14-TMA)与相关化合物3-十四烷酰基tetronic(C14-TOA)和3-十四烷酰硫代tetronic(C14-TTA)的抗菌活性,细胞毒性和CLS潜力,它们是铜绿假单胞菌产生的群体感应信号分子的变体。 >方法:通过MIC,细菌杀灭,膜电位和通透性测定来确定5HE-C14-TMA,C14-TOA和C14-TTA的抗菌活性和作用机理。研究了在体外存在血浆的情况下形成的金黄色葡萄球菌生物膜的敏感性,进行了MTT细胞毒性测试,并对暴露于5HE-C14-TMA和/或金黄色葡萄球菌生物膜后人血中的细胞因子释放进行了定量。使用大鼠血管内导管生物膜感染模型评估了5HE-C14-TMA在体内作为CLS治疗的有效性。 >结果:5HE-C14-TMA,C14-TOA和C14-TTA的MIC范围为2至4μmg/ L。 5HE-C14-TMA和C14-TTA具有杀菌作用;这三种化合物都通过增加膜的渗透性来扰动葡萄球菌膜,使跨膜电位去极化并引起ATP泄漏。细胞毒性和溶血活性与化合物和靶细胞类型有关。 5HE-C14-TMA在体外和体内均呈剂量依赖性地降低了金黄色葡萄球菌生物膜的活力,并且未触发人血中细胞因子的释放,但抑制了由S.诱导的高水平的IL-8和TNF-α。金黄色生物膜。 >结论:5HE-C14-TMA,C14-TOA和C14-TTA是膜活性剂。 5HE-C14-TMA是最有效的消灭金黄色葡萄球菌的生物膜,在体外和体内均以CLS的形式消灭,浓度为512–1024 eramg / L。

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