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Updated: Jun 22, 2026

Tractable Mammalian Cell Infections with Protozoan-primed Bacteria
Published on: April 2, 2013
From Investigating a Case of Cellulitis to Exploring Nosocomial Infection Control of ST1 Legionella pneumophila Using
Charlotte Michel1,2, Fedoua Echahidi1, Sammy Place3
1Department of Microbiology, Universitair Ziekenhuis Brussel (UZ Brussel), Vrije Universiteit Brussel (VUB), Laarbeeklaan 101, 1090 Brussels, Belgium.
Abstract:
Legionella pneumophila can cause a large panel of symptoms besides the classic pneumonia presentation. Here we present a case of fatal nosocomial cellulitis in an immunocompromised patient followed, a year later, by a second case of Legionnaires' disease in the same ward. While the first case was easily assumed as nosocomial based on the date of symptom onset, the second case required clear typing results to be assigned either as nosocomial and related to the same environmental source as the first case, or community acquired. To untangle this specific question, we applied core-genome multilocus typing (MLST), whole-genome single nucleotide polymorphism and whole-genome MLST methods to a collection of 36 Belgian and 41 international sequence-type 1 (ST1) isolates using both thresholds recommended in the literature and tailored threshold based on local epidemiological data. Based on the thresholds applied to cluster isolates together, the three methods gave different results and no firm conclusion about the nosocomial setting of the second case could been drawn. Our data highlight that despite promising results in the study of outbreaks and for large-scale epidemiological investigations, next-generation sequencing typing methods applied to ST1 outbreak investigation still need standardization regarding both wet-lab protocols and bioinformatics. A deeper evaluation of the L. pneumophila evolutionary clock is also required to increase our understanding of genomic differences between isolates sampled during a clinical infection and in the environment.
Insights
Investigating Legionella pneumophila outbreaks is challenging. Next-generation sequencing methods for typing require standardization for accurate nosocomial infection identification.
Area of Science:
- Microbiology
- Infectious Diseases
- Genomics
Background:
- Legionella pneumophila causes various illnesses beyond pneumonia, including nosocomial infections.
- Differentiating between hospital-acquired and community-acquired Legionnaires' disease is crucial for infection control.
Observation:
- A fatal case of nosocomial cellulitis was followed by a second Legionnaires' disease case in the same ward a year later.
- The second case's origin (nosocomial vs. community) was unclear without definitive typing results.
Findings:
- Core-genome multilocus typing (MLST), whole-genome single nucleotide polymorphism, and whole-genome MLST were applied to 36 Belgian and 41 international sequence-type 1 (ST1) isolates.
- Different typing methods yielded varying results based on applied thresholds, preventing a firm conclusion on the second case's nosocomial origin.
- Standardization of both wet-lab protocols and bioinformatics for next-generation sequencing in ST1 outbreak investigations is needed.
Implications:
- Current next-generation sequencing typing methods need standardization for reliable outbreak investigations and epidemiological studies of L. pneumophila.
- Further research into the L. pneumophila evolutionary clock is necessary to understand genomic variations between clinical and environmental isolates.
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