Background <p>The carbapenem-resistant <i>Enterobacter cloacae</i> (CREC) have become a global health concern. However, our understanding of its epidemiological trends and resistance mechanisms still needs to be improved.</p> Methods <p>Ninety-one non-repetitive clinical CREC isolates were collected from 12 hospitals across China and identified using MALDI-TOF MS, rMLST, ANI, MASH, and dDDH. Minimal inhibitory concentrations were determined via broth microdilution. Resistance genes and plasmid replicons were identified using ResFinder and PlasmidFinder. Carbonyl cyanide 3-chlorophenylhydrazone suppression test and OmpC and OmpF overexpression test were conducted on 32 non-carbapenemase-producing (NCP) isolates. A phylogenetic tree was constructed with kSNP4 and visualized through iTOL.</p> Results <p>Among the 91 CREC isolates, <i>E. hormaechei</i> was predominate (75 isolates), followed by <i>E. kobei</i> (five isolates). Within <i>E. hormaechei</i>, <i>E. hormaechei</i> subsp <i>xiangfangensis</i> was the most widespread subspecies. Sixty isolates produced carbapenemase, with <i>bla</i><sub>NDM-1</sub> identified in 36 isolates, <i>bla</i><sub>KPC-2</sub> in six isolates<i>,</i> and <i>bla</i><sub>NDM-5</sub> in six isolates. Two isolates harbored both <i>bla</i><sub>NDM-1</sub> and <i>bla</i><sub>KPC-2</sub>. Thirty-two isolates were NCP isolates, primarily due to carbonyl cyanide 3-chlorophenylhydrazone suppression.</p> Conclusions <p>Among CREC in China, the <i>bla</i><sub>NDM-1</sub> was the dominant carbapenemase-coding gene. For NCP isolates, efflux pumps were the main reason for carbapenem resistance, and susceptibility could be restored in an antibiotic-free environment.</p>

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Surveillance and characterization of carbapenem-resistant Enterobacter cloacae complex from China, 2015–2018

  • Kun Ye,
  • Yongqing Zhang,
  • Xuemei Qiu,
  • Liyan Ye,
  • Jiyong Yang,
  • Yanning Ma

摘要

Background

The carbapenem-resistant Enterobacter cloacae (CREC) have become a global health concern. However, our understanding of its epidemiological trends and resistance mechanisms still needs to be improved.

Methods

Ninety-one non-repetitive clinical CREC isolates were collected from 12 hospitals across China and identified using MALDI-TOF MS, rMLST, ANI, MASH, and dDDH. Minimal inhibitory concentrations were determined via broth microdilution. Resistance genes and plasmid replicons were identified using ResFinder and PlasmidFinder. Carbonyl cyanide 3-chlorophenylhydrazone suppression test and OmpC and OmpF overexpression test were conducted on 32 non-carbapenemase-producing (NCP) isolates. A phylogenetic tree was constructed with kSNP4 and visualized through iTOL.

Results

Among the 91 CREC isolates, E. hormaechei was predominate (75 isolates), followed by E. kobei (five isolates). Within E. hormaechei, E. hormaechei subsp xiangfangensis was the most widespread subspecies. Sixty isolates produced carbapenemase, with blaNDM-1 identified in 36 isolates, blaKPC-2 in six isolates, and blaNDM-5 in six isolates. Two isolates harbored both blaNDM-1 and blaKPC-2. Thirty-two isolates were NCP isolates, primarily due to carbonyl cyanide 3-chlorophenylhydrazone suppression.

Conclusions

Among CREC in China, the blaNDM-1 was the dominant carbapenemase-coding gene. For NCP isolates, efflux pumps were the main reason for carbapenem resistance, and susceptibility could be restored in an antibiotic-free environment.