首页> 外文OA文献 >A Galleria mellonella infection model reveals double and triple antibiotic combination therapies with enhanced efficacy versus a multi-drug resistant strain of Pseudomonas aeruginosa.
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A Galleria mellonella infection model reveals double and triple antibiotic combination therapies with enhanced efficacy versus a multi-drug resistant strain of Pseudomonas aeruginosa.

机译:梅勒氏菌感染模型显示出与铜绿假单胞菌的多重耐药菌株相比,双重和三次抗生素联合疗法具有更高的功效。

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摘要

The aim of this study was to compare the inhibitory effect of antibiotic combinations in vitro with efficacy in G. mellonella larvae in vivo to identify efficacious combinations that target P. aeruginosa. P. aeruginosa NCTC13437, a MDR strain resistant to -lactams and aminoglycosides, was used. Susceptibility to CTX, PIP, MER, AMK, LVX and CST alone, or in dual or triple combinations, was measured in vitro via a 24 h time-kill assay. In vitro results were then compared with the efficacy of the same dual or triple antibiotic combinations versus G. mellonella larvae infected with P. aeruginosa. G. mellonella haemolymph burden of P. aeruginosa was determined over 96 h post-infection and treatment with the most potent combination therapies. Many dual and triple combinations of antibiotics displayed synergistic inhibition of MDR P. aeruginosa in vitro. There was little correlation between combinations that were synergistic in vitro and those that showed enhanced efficacy in vivo versus infected G. mellonella larvae. The most potent dual and triple combinations in vivo were CTX + PIP and MER + PIP + AMK respectively. Fewer combinations were found to offer enhanced therapeutic benefit in vivo compared to in vitro. The therapeutic benefit arising from treatment with antibiotic combinations in vivo correlated with reduced larval burden of P. aeruginosa. This study has identified antibiotic combinations that merit further investigation for their clinical potential and has demonstrated the utility of using G. mellonella to screen for novel antibiotic treatments that demonstrate efficacy in vivo.
机译:这项研究的目的是比较抗生素组合在体外的抑制作用和体内对苜蓿根瘤菌幼虫的功效,以鉴定靶向铜绿假单胞菌的有效组合。使用铜绿假单胞菌NCTC13437,其对β-内酰胺和氨基糖苷具有抗性。通过24小时杀灭时间测定法在体外测量了对CTX,PIP,MER,AMK,LVX和CST的敏感性,或对双重或三次结合的敏感性。然后将体外结果与相同的双重或三重抗生素组合与铜绿假单胞菌感染的马齿。幼虫的功效进行比较。在感染后96小时内测定铜绿假单胞菌的G. mellonella血淋巴负荷,并用最有效的联合疗法进行治疗。抗生素的许多双重和三次组合在体外显示出对MDR铜绿假单胞菌的协同抑制作用。与感染的G. mellonella幼虫相比,在体外具有协同作用的组合与在体内显示出增强的功效的组合之间几乎没有相关性。体内最有效的双重和三重组合分别是CTX + PIP和MER + PIP + AMK。与体外相比,发现更少的组合在体内提供增强的治疗益处。体内用抗生素组合治疗产生的治疗益处与铜绿假单胞菌的幼虫负担减少有关。这项研究已经确定了需要进一步研究其临床潜力的抗生素组合,并证明了使用mel。mellonella筛选具有新的体内治疗效果的抗生素治疗的实用性。

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