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头孢地尔罗对产碳青霉烯酶阴沟肠杆菌复合体的抗菌活性及与金属β-内酰胺酶 VIM-1 相关的低敏感性的特征。

Antimicrobial Activity of Cefiderocol against the Carbapenemase-Producing Enterobacter cloacae Complex and Characterization of Reduced Susceptibility Associated with Metallo-β-Lactamase VIM-1.

机构信息

Microbiology Department, A Coruña University Hospital Complex (CHUAC), A Coruña Institute for Biomedical Research (INIBIC), CIBER de Enfermedades Infecciosas (CIBERINFEC), A Coruña, Spain.

NANOBIOFAR, Centre for Research in Molecular Medicine and Chronic Diseases (CiMUS), Universidad de Santiago de Compostela, Santiago de Compostela, Spain.

出版信息

Antimicrob Agents Chemother. 2023 May 17;67(5):e0150522. doi: 10.1128/aac.01505-22. Epub 2023 Apr 13.

Abstract

Emergence of cefiderocol resistance among carbapenemase-producing Enterobacterales, particularly those in the Enterobacter cloacae complex (ECC), is becoming of alarming concern; however, the mechanistic basis of this phenomenon remains poorly understood. We describe the acquisition of VIM-1-mediated reduced cefiderocol susceptibility (MICs 0.5 to 4 mg/L) in a collection of 54 carbapenemase-producing isolates belonging to the ECC. MICs were determined by reference methodologies. Antimicrobial resistance genomic analysis was performed through hybrid WGS. The impact of VIM-1 production on cefiderocol resistance in the ECC background was examined at microbiological, molecular, biochemical, and atomic levels. Antimicrobial susceptibility testing yielded 83.3% susceptible isolates and MIC values of 1/4 mg/L. Decreased susceptibility to cefiderocol was mainly associated with isolates producing VIM-1, with cefiderocol MICs 2- to 4-fold higher than for isolates carrying other types of carbapenemases. E. cloacae and Escherichia coli VIM-1 transformants displayed significantly enhanced cefiderocol MICs. Biochemical assays with purified VIM-1 protein revealed low but detectable cefiderocol hydrolysis. Simulation studies revealed how cefiderocol is anchored to the VIM-1 active site. Additional molecular assays and WGS data analysis highlighted the implication of SHV-12 coproduction and suggested the inactivation of the FcuA-like siderophore receptor as further contributors to the higher cefiderocol MICs. Our findings warn of the potential of the VIM-1 carbapenemase to at least partly limit the activity of cefiderocol in the ECC. This effect is probably enhanced due to combination with additional mechanisms, such as ESBL production and siderophore inactivation, and indicates the need for active surveillance to extend the life span of this promising cephalosporin.

摘要

产碳青霉烯酶肠杆菌科细菌(尤其是阴沟肠杆菌复合体(ECC)中的细菌)对头孢地尔的耐药性不断出现,令人担忧;然而,这一现象的机制基础仍知之甚少。我们描述了在一组 54 株产碳青霉烯酶的 ECC 分离株中,获得了 VIM-1 介导的降低头孢地尔敏感性(MIC 值为 0.5 至 4mg/L)。MIC 值通过参考方法确定。通过混合 WGS 进行抗菌药物耐药基因组分析。在微生物学、分子、生化和原子水平上研究了 ECC 背景下 VIM-1 产生对头孢地尔耐药性的影响。药敏试验得出 83.3%敏感的分离株,MIC 值为 1/4mg/L。头孢地尔的低敏感性主要与产 VIM-1 的分离株有关,与携带其他类型碳青霉烯酶的分离株相比,头孢地尔 MIC 值高出 2 至 4 倍。阴沟肠杆菌和大肠埃希菌 VIM-1 转化子显示出显著增强的头孢地尔 MIC 值。用纯化的 VIM-1 蛋白进行的生化测定显示出低但可检测到的头孢地尔水解。模拟研究揭示了头孢地尔如何与 VIM-1 活性位点结合。其他分子检测和 WGS 数据分析突出了 SHV-12 共产生的意义,并表明 FcuA 样铁载体受体的失活是导致头孢地尔 MIC 值更高的进一步因素。我们的研究结果警告称,VIM-1 碳青霉烯酶至少可能部分限制头孢地尔在 ECC 中的活性。这种效应可能因与其他机制(如 ESBL 产生和铁载体失活)的结合而增强,并表明需要积极监测以延长这种有前途的头孢菌素的使用寿命。

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