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A Mouse Model to Assess Innate Immune Response to Staphylococcus aureus Infection
Published on: February 28, 2019
Global spread of mouse-adapted Staphylococcus aureus lineages CC1, CC15, and CC88 among mouse breeding facilities
Daniel M Mrochen1, Dorothee Grumann1, Daniel Schulz1
1Department of Immunology, University Medicine Greifswald, Germany.
Abstract:
We previously reported that laboratory mice from all global vendors are frequently colonized with Staphylococcus aureus (S. aureus). Genotyping of a snap sample of murine S. aureus isolates from Charles River, US, showed that mice were predominantly colonized with methicillin-sensitive CC88 strains. Here, we expanded our view and investigated whether laboratory mice from other global animal facilities are colonized with similar strains or novel S. aureus lineages, and whether the murine S. aureus isolates show features of host adaptation. In total, we genotyped 230 S. aureus isolates from various vendor facilities of laboratory mice around the globe (Charles River facilities in the USA, Canada, France, and Germany; another US facility) and university- or company-associated breeding facilities in Germany, China and New Zealand. Spa typing was performed to analyse the clonal relationship of the isolates. Moreover, multiplex PCRs were performed for human-specific virulence factors, the immune-evasion cluster (IEC) and superantigen genes (SAg). We found a total of 58 different spa types that clustered into 15 clonal complexes (CCs). Three of these S. aureus lineages had spread globally among laboratory mice and accounted for three quarters of the isolates: CC1 (13.5%), CC15 (14.3%), and CC88 (47.0%). Compared to human colonizing isolates of the same lineages, the murine isolates frequently lacked IEC genes and SAg genes on mobile genetic elements, implying long-term adaptation to the murine host. In conclusion, laboratory mice from various vendors are colonized with host-adapted S. aureus-strains of a few lineages, predominantly the CC88 lineage. S. aureus researchers must be cautioned that S. aureus colonization might be a relevant confounder in infection and vaccination studies and are therefore advised to screen their mice before experimentation.
Insights
Laboratory mice globally are commonly colonized by Staphylococcus aureus (S. aureus). These S. aureus strains show host adaptation, predominantly belonging to lineages CC1, CC15, and CC88, which can confound research.
Area of Science:
- Microbiology
- Animal Models
- Infectious Diseases
Background:
- Laboratory mice are frequently colonized with Staphylococcus aureus (S. aureus).
- Previous work identified methicillin-sensitive CC88 strains in US-sourced mice.
- The global prevalence and host adaptation of S. aureus in mice remain under-investigated.
Purpose of the Study:
- To investigate global S. aureus colonization patterns in laboratory mice.
- To determine if murine S. aureus isolates exhibit host-specific adaptations.
- To identify common S. aureus lineages and their distribution across vendors.
Main Methods:
- Genotyping of 230 S. aureus isolates from global mouse vendor facilities.
- Spa typing to analyze clonal relationships.
- Multiplex PCR for human-specific virulence factors, immune-evasion cluster (IEC), and superantigen genes (SAg).
Main Results:
- Identified 58 spa types clustering into 15 clonal complexes (CCs).
- Three globally spread lineages (CC1, CC15, CC88) accounted for 75% of isolates.
- Murine isolates frequently lacked IEC and SAg genes compared to human isolates, suggesting host adaptation.
Conclusions:
- Laboratory mice from diverse vendors are colonized by a few, globally distributed, host-adapted S. aureus lineages, notably CC88.
- S. aureus colonization can be a significant confounder in infection and vaccination studies.
- Researchers are advised to screen mice for S. aureus prior to experimental use.

