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A Mouse Model to Assess Innate Immune Response to Staphylococcus aureus Infection
Published on: February 28, 2019
Collaborative Cross mice have diverse phenotypic responses to infection with Methicillin-resistant Staphylococcus
Aravindh Nagarajan1,2, Kristin Scoggin1,3, Jyotsana Gupta2
1Interdisciplinary Program in Genetics and Genomics, Texas A&M University, College Station, Texas, United States of America.
Abstract:
Staphylococcus aureus (S. aureus) is an opportunistic pathogen causing diseases ranging from mild skin infections to life threatening conditions, including endocarditis, pneumonia, and sepsis. To identify host genes modulating this host-pathogen interaction, we infected 25 Collaborative Cross (CC) mouse strains with methicillin-resistant S. aureus (MRSA) and monitored disease progression for seven days using a surgically implanted telemetry system. CC strains varied widely in their response to intravenous MRSA infection. We identified eight 'susceptible' CC strains with high bacterial load, tissue damage, and reduced survival. Among the surviving strains, six with minimal colonization were classified as 'resistant', while the remaining six tolerated higher organ colonization ('tolerant'). The kidney was the most heavily colonized organ, but liver, spleen and lung colonization were better correlated with reduced survival. Resistant strains had higher pre-infection circulating neutrophils and lower post-infection tissue damage compared to susceptible and tolerant strains. We identified four CC strains with sexual dimorphism: all females survived the study period while all males met our euthanasia criteria earlier. In these CC strains, males had more baseline circulating monocytes and red blood cells. We identified several CC strains that may be useful as new models for endocarditis, myocarditis, pneumonia, and resistance to MRSA infection. Quantitative Trait Locus (QTL) analysis identified two significant loci, on Chromosomes 18 and 3, involved in early susceptibility and late survival after infection. We prioritized Npc1 and Ifi44l genes as the strongest candidates influencing survival using variant analysis and mRNA expression data from kidneys within these intervals.
Insights
This study used Collaborative Cross (CC) mice to model Staphylococcus aureus (S. aureus) infection, identifying genetic factors influencing disease severity and survival. Findings reveal distinct host responses and potential new models for S. aureus infections.
Area of Science:
- Infectious Diseases
- Genetics
- Immunology
Background:
- Staphylococcus aureus (S. aureus) is an opportunistic pathogen causing a spectrum of diseases.
- Understanding host genetic factors is crucial for managing S. aureus infections.
Purpose of the Study:
- To identify host genes and pathways modulating the response to methicillin-resistant S. aureus (MRSA) infection.
- To characterize disease progression and host defense mechanisms across diverse mouse strains.
Main Methods:
- Infection of 25 Collaborative Cross (CC) mouse strains with MRSA.
- Monitoring disease progression using telemetry and assessing bacterial load, tissue damage, and survival.
- Quantitative Trait Locus (QTL) analysis and gene expression profiling.
Main Results:
- CC strains exhibited significant variation in susceptibility, resistance, and tolerance to MRSA infection.
- Kidney colonization was high, but liver, spleen, and lung colonization correlated with reduced survival.
- Resistant strains showed higher baseline neutrophils and less tissue damage; sexual dimorphism was observed in four strains.
- QTL analysis identified loci on Chromosomes 18 and 3, with Npc1 and Ifi44l as candidate genes.
Conclusions:
- Collaborative Cross mice offer valuable models for studying S. aureus pathogenesis and host responses.
- Genetic loci and candidate genes influencing MRSA infection outcomes were identified.
- Host genetic background and sex significantly impact disease severity and survival.

