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首页> 外文期刊>PLoS One >ddcP , pstB , and excess D-lactate impact synergism between vancomycin and chlorhexidine against Enterococcus faecium 1,231,410
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ddcP , pstB , and excess D-lactate impact synergism between vancomycin and chlorhexidine against Enterococcus faecium 1,231,410

机译:DDCP,PSTB和过量的D-乳酸乳酸反对肠球菌和氯己定的反对肠球菌粪便1,231,410之间的影响

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摘要

Vancomycin-resistant enterococci (VRE) are important nosocomial pathogens that cause life-threatening infections. To control hospital-associated infections, skin antisepsis and bathing utilizing chlorhexidine is recommended for VRE patients in acute care hospitals. Previously, we reported that exposure to inhibitory chlorhexidine levels induced the expression of vancomycin resistance genes in VanA-type Enterococcus faecium . However, vancomycin susceptibility actually increased for VanA-type E . faecium in the presence of chlorhexidine. Hence, a synergistic effect of the two antimicrobials was observed. In this study, we used multiple approaches to investigate the mechanism of synergism between chlorhexidine and vancomycin in the VanA-type VRE strain E . faecium 1,231,410. We generated clean deletions of 7 of 11 pbp , transpeptidase, and carboxypeptidase genes in this strain ( ponA , pbpF , pbpZ , pbpA , ddcP , ldt fm , and vanY ). Deletion of ddcP , encoding a membrane-bound carboxypeptidase, altered the synergism phenotype. Furthermore, using in vitro evolution, we isolated a spontaneous synergy escaper mutant and utilized whole genome sequencing to determine that a mutation in pstB , encoding an ATPase of phosphate-specific transporters, also altered synergism. Finally, addition of excess D-lactate, but not D-alanine, enhanced synergism to reduce vancomycin MIC levels. Overall, our work identified factors that alter chlorhexidine and vancomycin synergism in a model VanA-type VRE strain.
机译:耐肠病肠道肠杆菌(VRE)是重要的医院病原体,导致危及生命的感染。为了控制医院相关的感染,推荐用于急性护理医院的VRE患者的患者使用氯己定的皮肤防腐和沐浴。此前,我们报道暴露于抑制氯己定水平诱导vana-型肠球菌饲料中的万古霉素抗性基因的表达。然而,Vana-型e实际上增加了万古霉素易感性。粪便在氯己定存在下。因此,观察到两种抗微生物的协同效应。在这项研究中,我们使用多种方法来研究Vana型VRE菌株E中氯己定和万古霉素之间协同作用的机制。 Faecium 1,231,410。在该菌株(PONA,PBPF,PBPZ,PBPA,DDCP,LDT FM和VANY)中,我们产生了7个PBP,转琥珀酶和羧肽酶基因的清洁缺失。缺失DDCP,编码膜结合的羧肽酶,改变了协同表型。此外,使用体外演化,我们分离出自发协同突变突变体突变体并利用全基因组测序来确定PSTB中的突变,编码磷酸盐特异性转运蛋白的ATP酶,也改变了协同作用。最后,添加过量的D-乳酸,但不是D-丙氨酸,增强的协同作用以减少万古霉素MIC水平。总体而言,我们的工作确定了在Vana型VRE菌株模型中改变氯己定和万古霉素协同作用的因素。

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