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Updated: Jun 14, 2025

Tools for the Real-Time Assessment of a Pseudomonas aeruginosa Infection Model
Published on: April 6, 2021
Acanthamoebae as a protective reservoir for Pseudomonas aeruginosa in a clinical environment
R Mooney1, K Richardson1, K Rodgers1
1School of Health and Life Sciences, University of the West of Scotland, Lanarkshire Campus, South Lanarkshire, UK.
Background:
Pseudomonas aeruginosa is a growing concern in healthcare-associated infections and poses significant risk to those with serious underlying health conditions. The antimicrobial resistance traits of the pathogen and ability to form biofilms make effective mitigation and disinfection strategies difficult. Added to this challenge is the role that free-living amoebae such as Acanthamoeba play in the detection, disinfection and transmission of P. aeruginosa. P. aeruginosa can survive intracellularly within amoebae, which has the potential to limit detectability and permit transmission into high-risk areas.
Methods/Findings:
We screened for the presence of Acanthamoeba spp. and P. aeruginosa within a functioning general hospital in Scotland using a culture and molecular approach, noting their presence at several sites over a four-month period, particularly within floor drains connecting patient rooms. In addition, microbiome analysis revealed that amoebae harbour a unique microbial community comprised primarily of Pseudomonas spp. that were not readily detected using microbiome sequencing techniques on environmental swabs. Having demonstrated that both organisms were consistently present in hospital settings, we investigated the relationship between acanthamoeba and P. aeruginosa in the laboratory, showing that (i) acanthamoeba growth rate is increased in the presence of pseudomonas biofilms and viable pseudomonas persist within the amoebae and (ii) hydrogen peroxide-based disinfectants are significantly less effective against an isolate of P. aeruginosa in the presence of acanthamoeba than when the bacteria are incubated alone.
Conclusions:
These findings suggest that amoebae, and other protists, can influence the detection and persistence of P. aeruginosa in high-risk areas and should be considered when implementing mitigation strategies.
Insights
Free-living amoebae like Acanthamoeba can harbor Pseudomonas aeruginosa, impacting its detection and persistence in hospitals. This interaction reduces disinfectant effectiveness, highlighting the need to consider protists in infection control strategies.
Area of Science:
- Microbiology
- Environmental Health
- Infectious Diseases
Background:
- Pseudomonas aeruginosa is a significant cause of healthcare-associated infections.
- Antimicrobial resistance and biofilm formation complicate P. aeruginosa control.
- Free-living amoebae, such as Acanthamoeba, can harbor and transmit P. aeruginosa.
Purpose of the Study:
- To investigate the presence and interaction of Acanthamoeba and P. aeruginosa in a hospital environment.
- To determine the impact of Acanthamoeba on P. aeruginosa detection and disinfectant efficacy.
Main Methods:
- Culture and molecular methods were used to screen for Acanthamoeba and P. aeruginosa in a hospital.
- Microbiome analysis was performed on environmental samples and amoebal cultures.
- Laboratory experiments assessed the interaction between Acanthamoeba and P. aeruginosa biofilms and the efficacy of disinfectants.
Main Results:
- Acanthamoeba and P. aeruginosa were detected in hospital sites, particularly floor drains.
- Amoebae harbored Pseudomonas spp. not easily detected by standard environmental sequencing.
- Acanthamoeba presence enhanced P. aeruginosa biofilm growth and reduced disinfectant effectiveness.
Conclusions:
- Amoebae can influence the detection and persistence of P. aeruginosa in healthcare settings.
- Protists should be considered in strategies to mitigate P. aeruginosa infections.
- Findings highlight a novel challenge in hospital infection control.
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