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December 4, 2025Antibiotics2 citationsOpen Access

The Public Health Risks of Colistin Resistance in Dogs and Cats: A One Health Perspective Review

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JMJuliana MenezesLFLaura FernandesCMCátia Marques

Key Points

  • Colistin resistance is a significant threat to public health as it spreads in companion animals and the environment.
  • Epidemiological studies show increasing colistin-resistant bacteria globally, emphasizing urgent action in veterinary practices.
  • Diagnostic challenges hinder reliable detection of colistin-resistant strains in both dogs and cats, complicating control efforts.
  • A One Health approach integrating surveillance and infection control measures in veterinary fields is crucial to manage resistance.

Abstract

Colistin, a polymyxin antibiotic considered a last-line treatment for multidrug-resistant Gram-negative infections, has been widely used in livestock, promoting resistance in bacterial populations that can disseminate through the environment. Although rarely used in companion animals, dogs and cats can acquire and spread colistin-resistant strains through shared environments, acting as potential reservoirs of resistance. Reliable detection of resistant strains remains challenging due to technical limitations of routine susceptibility tests. Despite these constraints, epidemiological studies demonstrate the global presence of colistin-resistant bacteria in companion animals, with multiple plasmid-mediated colistin-resistant genes (mcr) identified in different bacteria species. Evidence of clonal and plasmid-mediated sharing of resistant strains between companion animals, humans, and, in some cases, food-producing animals highlights the complex and multidirectional nature of transmission. Although the directionality of transmission remains difficult to establish, the detection of colistin-resistant bacteria in companion animals is concerning. Addressing this challenge requires a One Health approach, integrating coordinated surveillance and infection and control measures in veterinary practices to safeguard the effectiveness of this critical last-resort antibiotic. This review summarizes current knowledge on colistin resistance mechanisms, diagnostic challenges, epidemiology, and the potential for interhost transmission, highlighting the role of dogs and cats as potential reservoirs of colistin resistance.

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Cite This Study

Menezes et al. (2025) studied this question.

synapsesocial.com/papers/6930e8d7ea1aef094cca39c7https://doi.org/10.3390/antibiotics14121213
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Leakage of periplasmic proteins from Escherichia coli mediated by polymyxin B nonapeptide1986 · 111 citations
  2. 2Development and Multicentric Validation of a Lateral Flow Immunoassay for Rapid Detection of MCR-1-Producing Enterobacteriaceae2019 · 34 citations
  3. 3Identification of novel mobile colistin resistance gene mcr-102020 · 462 citations
  4. 4Multiplex PCR for detection of plasmid-mediated colistin resistance determinants, mcr-1, mcr-2, mcr-3, mcr-4 and mcr-5 for surveillance purposes2018 · 679 citations
  5. 5Evaluation of colistin stability in agar and comparison of four methods for MIC testing of colistin2017 · 90 citations