1. Nosocomial infections by diverse carbapenemase-producing Aeromonas hydrophila associated with combination of plumbing issues and heat waves
- Author
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Gray, Hannah K, Bisht, Anjali, Caldera, JR, Fossas Braegger, Nicole M, Cambou, Mary C, Sakona, Ashlyn N, Beaird, Omer E, Uslan, Daniel Z, Walton, Shaunte C, and Yang, Shangxin
- Subjects
Medical Microbiology ,Biomedical and Clinical Sciences ,Clinical Sciences ,Infectious Diseases ,Antimicrobial Resistance ,2.2 Factors relating to the physical environment ,Infection ,Good Health and Well Being ,Humans ,Aeromonas hydrophila ,Sanitary Engineering ,Cross Infection ,Hot Temperature ,beta-Lactamases ,Aeromonas ,Anti-Bacterial Agents ,Microbial Sensitivity Tests ,Bacterial Proteins ,Drug resistance ,Climate change ,Outbreak investigation ,Whole-genome sequencing ,Nursing ,Public Health and Health Services ,Epidemiology ,Clinical sciences ,Public health - Abstract
BackgroundAquatic opportunistic pathogen Aeromonas hydrophila, known to persist in low-nutrient chlorinated waters, can cause life-threatening infections. Two intensive care units experienced a cluster of Aeromonas infections following outdoor temperature spikes coinciding with recurrent plumbing issues, with fatalities due to severe underlying comorbidities co-occurring with extensively-drug resistant (XDR) Aeromonas.MethodsWe investigated this cluster using whole genome sequencing to assess genetic relatedness of isolates and identify antimicrobial resistance determinants. Three A. hydrophila were isolated from patients staying in or adjacent to rooms with plumbing issues during or immediately after periods of elevated outdoor temperatures. Sinks and faucets were swabbed for culture.ResultsAll A. hydrophila clinical isolates exhibited carbapenem resistance but were not genetically related. Diverse resistance determinants corresponding to extensively-drug resistant were found, including co-occurring KPC-3 and VIM-2, OXA-232, and chromosomal CphA-like carbapenemase genes, contributing to major treatment challenges. All 3 patients were treated with multiple antibiotic regimens to overcome various carbapenemase classes and expired due to underlying comorbidities. Environmental culture yielded no Aeromonas.ConclusionsWhile the investigation revealed no singular source of contamination, it supports a possible link between plumbing issues, elevated outdoor temperatures and incidence of nosocomial Aeromonas infections. The diversity of carbapenemase genes detected in these wastewater-derived Aeromonas warrants heightened infection prevention precautions during periods of plumbing problems especially with heat waves.
- Published
- 2024