Development of disinfectant tolerance in Klebsiella pneumoniae
Development of disinfectant tolerance in Klebsiella pneumoniae
BACKGROUND: Disinfectants are a critical infection control measure that are relied upon globally in a range of settings including healthcare, food production, and domestic environments. However, bacteria have been shown to survive disinfectant treatments when harboured in dry surface biofilms or when disinfectants are used ineffectively. This provides an opportunity for organisms to develop low-level tolerance to various disinfectants. The capability of bacteria to develop adaptations to non-antibiotic antimicrobial agents is often overlooked.
AIM: To report on the capability and readiness of clinically relevant K. pneumoniae to adapt to common disinfectants that are relied upon every day across the world, delivering much-needed insights into an often-overlooked aspect of antimicrobial resistance.
METHODS: This study investigated the ability of Klebsiella pneumoniae NDM-1 strain NCTC 13443 to adapt to a range of common chemical disinfectants (benzalkonium chloride, didecyldimethylammonium chloride, polyhexamethylene biguanide, chlorocresol and bronopol) via serial passage exposure method.
FINDINGS: After long-term adaptation, K. pneumoniae developed tolerance to all tested disinfectants, exhibiting a minimum inhibitory concentration increase of between 30 and 413% compared with the untreated parent samples. Characterization of disinfectant cross-tolerance showed that while cross-tolerance can occur, most adapted samples became more susceptible to the second disinfectant treatment, probably because of the fitness cost of adaptation. Observed cross-tolerance/collateral sensitivity was not always reciprocated between disinfectant-tolerant samples.
CONCLUSIONS: Results suggest the order of disinfectant exposure is important during tolerance development. This has significant implications for disinfectant cleaning routines, and is probably due to variations in the underpinning tolerance mechanisms, even when the disinfectants display similar mechanisms of action.
Disinfectants/pharmacology, Drug Resistance, Bacterial, Drug Tolerance, Humans, Klebsiella pneumoniae/drug effects, Microbial Sensitivity Tests
248-253
Noel, D. J.
a5c6f0b3-b1e2-45b4-9d67-228808c44b04
Keevil, C.W.
cb7de0a7-ce33-4cfa-af52-07f99e5650eb
Wilks, S.A.
86c1f41a-12b3-451c-9245-b1a21775e993
January 2025
Noel, D. J.
a5c6f0b3-b1e2-45b4-9d67-228808c44b04
Keevil, C.W.
cb7de0a7-ce33-4cfa-af52-07f99e5650eb
Wilks, S.A.
86c1f41a-12b3-451c-9245-b1a21775e993
Noel, D. J., Keevil, C.W. and Wilks, S.A.
(2025)
Development of disinfectant tolerance in Klebsiella pneumoniae.
Journal of Hospital Infection, 155, .
(doi:10.1016/j.jhin.2024.11.006).
Abstract
BACKGROUND: Disinfectants are a critical infection control measure that are relied upon globally in a range of settings including healthcare, food production, and domestic environments. However, bacteria have been shown to survive disinfectant treatments when harboured in dry surface biofilms or when disinfectants are used ineffectively. This provides an opportunity for organisms to develop low-level tolerance to various disinfectants. The capability of bacteria to develop adaptations to non-antibiotic antimicrobial agents is often overlooked.
AIM: To report on the capability and readiness of clinically relevant K. pneumoniae to adapt to common disinfectants that are relied upon every day across the world, delivering much-needed insights into an often-overlooked aspect of antimicrobial resistance.
METHODS: This study investigated the ability of Klebsiella pneumoniae NDM-1 strain NCTC 13443 to adapt to a range of common chemical disinfectants (benzalkonium chloride, didecyldimethylammonium chloride, polyhexamethylene biguanide, chlorocresol and bronopol) via serial passage exposure method.
FINDINGS: After long-term adaptation, K. pneumoniae developed tolerance to all tested disinfectants, exhibiting a minimum inhibitory concentration increase of between 30 and 413% compared with the untreated parent samples. Characterization of disinfectant cross-tolerance showed that while cross-tolerance can occur, most adapted samples became more susceptible to the second disinfectant treatment, probably because of the fitness cost of adaptation. Observed cross-tolerance/collateral sensitivity was not always reciprocated between disinfectant-tolerant samples.
CONCLUSIONS: Results suggest the order of disinfectant exposure is important during tolerance development. This has significant implications for disinfectant cleaning routines, and is probably due to variations in the underpinning tolerance mechanisms, even when the disinfectants display similar mechanisms of action.
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PIIS019567012400375X
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Accepted/In Press date: 5 November 2024
e-pub ahead of print date: 13 November 2024
Published date: January 2025
Keywords:
Disinfectants/pharmacology, Drug Resistance, Bacterial, Drug Tolerance, Humans, Klebsiella pneumoniae/drug effects, Microbial Sensitivity Tests
Identifiers
Local EPrints ID: 496552
URI: http://eprints.soton.ac.uk/id/eprint/496552
ISSN: 0195-6701
PURE UUID: 492e641f-5565-45a7-8cb1-df90e6742706
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Date deposited: 18 Dec 2024 17:50
Last modified: 26 Jun 2025 01:55
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Author:
D. J. Noel
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