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Prevalence and Clinical Consequences of Colistin Heteroresistance and Evolution into Full Resistance in Carbapenem-Resistant Acinetobacter baumannii

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  • 06/25/2025
Type of Material
Authors
    Hadas Kon, Israel Ministry of Health, Tel AvivAmichay Hameir, Israel Ministry of Health, Tel AvivAmir Nutman, Israel Ministry of Health, Tel AvivElizabeth Temkin, Israel Ministry of Health, Tel AvivAlona Keren Paz, Israel Ministry of Health, Tel AvivJonathan Lellouche, Israel Ministry of Health, Tel AvivDavid Schwartz, Israel Ministry of Health, Tel AvivDavid Weiss, Emory UniversityKeith S Kaye, Rutgers State UniversityGeorge L Daikos, Laikon General HospitalAnna Skiada, Laikon General HospitalEmanuele Durante-Mangoni, University of Campania Luigi VanvitelliYael Dishon Benattar, Institute of Infectious Diseases, Rambam Health Care Campus, Haifa, IsraelDafna Yahav, Tel Aviv UniversityVered Daitch, Tel Aviv UniversityMariano Bernardo, AORN Ospedali dei Colli-Monaldi HospitalDomenico Iossa, University of Campania Luigi VanvitelliLena E Friberg, Uppsala UniversityUrsula Theuretzbacher, Center for Anti-Infective AgentsLeonard Leibovici, Tel Aviv UniversityYaakov Dickstein, Institute of Infectious Diseases, Rambam Health Care Campus, Haifa, IsraelDina Pollak, Microbiology LaboratorySigal Mendelsohn, Microbiology LaboratoryMical Paul, Institute of Infectious Diseases, Rambam Health Care Campus, HaifaYehuda Carmeli, Israel Ministry of Health, Tel Aviv
Language
  • English
Date
  • 2023-05-23
Publisher
  • AMER SOC MICROBIOLOGY
Publication Version
Copyright Statement
  • © 2023 Kon et al.
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Final Published Version (URL)
Title of Journal or Parent Work
Volume
  • 11
Issue
  • 3
Start Page
  • e0509322
End Page
  • e0509322
Abstract
  • Colistin heteroresistance (HR) refers to a bacterial population comprised of several subpopulations with different levels of resistance to colistin. In this study, we discuss the classic form of HR, in which a resistant subpopulation exists within a predominantly susceptible population. We investigated the prevalence of colistin HR and its evolution into full resistance among 173 clinical carbapenem-resistant Acinetobacter baumannii isolates and examined the effect of HR on clinical outcomes. To determine HR, we performed population analysis profiling. Our results showed a high prevalence of HR (67.1%). To examine evolution of HR strains into full resistance, the HR strains were grown in colistin-containing broth, transferred onto colistin-containing plates, and colonies on these plates were transferred into colistin-free broth. Many of the HR strains (80.2%) evolved into full resistance, 17.2% reverted to HR, and 2.6% were borderline. We used logistic regression to compare 14-day clinical failure and 14-day mortality between patients infected by HR versus susceptible non-HR carbapenem-resistant A. baumannii. In the subgroup of patients with bacteremia, HR was significantly associated with 14-day mortality. IMPORTANCE To our knowledge, this is the first large-scale study to report on HR in Gram-negative bacteria. We described the prevalence of colistin HR in a large sample of carbapenem-resistant A. baumannii isolates, the evolution of many colistin HR isolates to a resistant phenotype following colistin exposure and withdrawal, and the clinical consequences of colistin HR. We found a high prevalence of HR among clinical carbapenem-resistant A. baumannii isolates; most evolved into a resistant phenotype following colistin exposure and withdrawal. In patients treated with colistin, evolution of HR A. baumannii into full resistance could lead to higher rates of treatment failure and contribute to the reservoir of colistin-resistant pathogens in health care settings.
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Research Categories
  • Health Sciences, Medicine and Surgery

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