Growth phase influences virulence in Candidozyma auris systemic infection models
Michael J McFadden1, Juliet A E Anku1, Faith A Davis1
1Department of Microbiology and Immunology, University of Michigan, Ann Arbor, Michigan, USA.
Abstract:
Candidozyma auris is a growing public health concern, capable of causing long-term contamination of healthcare settings, skin colonization, and life-threatening bloodstream infections. However, C. auris pathogenesis is not well understood, which is exacerbated by limitations and discrepancies in existing animal infection models. Further, the effects of C. auris growth phase on virulence have not been examined, despite growth phase being linked to virulence in many bacterial species. To address this question, and to develop an immunocompetent murine model of infection, we directly compared log-phase and stationary-phase C. auris systemic infection in immunocompetent C57BL/6J mice at high and low doses of infection. Systemic infection with high-dose log-phase C. auris results in rapid mortality between 2 h and 1 day post-infection, whereas stationary phase C. auris results in significantly extended survival. However, at low doses of infection, there was no difference in mortality kinetics between log-phase and stationary-phase cells. We observed that C. auris initially colonizes multiple organs but is rapidly cleared from the lungs and spleen, while kidney fungal burdens remain stable. Mice infected with high-dose log-phase C. auris had fibrin-associated blood clotting in multiple organs and decreased serum fibrinogen levels, suggesting that coagulation may drive rapid mortality. This was associated with increased β-glucan exposure and mannan abundance in log-phase C. auris. These results will inform the development of a more standardized animal model of systemic C. auris infection, which can be used to reveal key aspects of C. auris pathogenesis.IMPORTANCEDespite its growing medical importance, there is limited understanding of Candidozyma auris pathogenesis, due in part to limitations of existing laboratory models of infection. To develop a more complete understanding of factors that contribute to C. auris pathogenesis, it will be necessary to establish consistent parameters for animal models of infection. To address this need, we directly compared log and stationary growth phases on C. auris pathogenesis in immunocompetent C57BL/6J mice using a single virulent Clade I isolate. At a high dose of infection, host survival was dramatically different between log-phase or stationary-phase C. auris, suggesting that growth phase can affect C. auris pathogenesis. These differences correlated with increased exposure of pathogen-associated molecular patterns in the C. auris cell wall in log-phase cells. These results will be instrumental in the future development of standardized animal models to study C. auris pathogenesis.
Insights
The growth phase of Candida auris significantly impacts its virulence and host survival in mice. Log-phase C. auris causes rapid mortality, while stationary-phase cells lead to extended survival, informing better animal models for studying this fungal pathogen.
Area of Science:
- Mycology
- Infectious Diseases
- Pathogenesis Research
Background:
- Candida auris is a critical public health threat due to its persistence in healthcare settings and potential for invasive infections.
- Understanding C. auris pathogenesis is limited by inadequate and inconsistent animal models.
- The impact of C. auris growth phase on virulence remains largely unexplored.
Purpose of the Study:
- To investigate the role of C. auris growth phase (log vs. stationary) in systemic infection.
- To develop and characterize an immunocompetent murine model for C. auris infection.
- To identify factors contributing to C. auris virulence and mortality.
Main Methods:
- Direct comparison of log-phase and stationary-phase C. auris systemic infection in C57BL/6J mice.
- High and low dose infection experiments were conducted.
- Survival kinetics, organ colonization, and host immune responses (coagulation, PAMPs) were analyzed.
Main Results:
- High-dose log-phase C. auris caused rapid mortality (2h-1 day), while stationary-phase cells resulted in significantly longer survival.
- Low-dose infections showed no difference in mortality kinetics between growth phases.
- Kidney fungal burdens remained stable, while lungs and spleen showed rapid clearance.
- Log-phase infection was associated with fibrin-associated blood clotting, decreased serum fibrinogen, and increased beta-glucan/mannan exposure.
Conclusions:
- The growth phase of C. auris is a critical determinant of virulence and host survival in a murine model.
- Differences in virulence correlate with cell wall component exposure (beta-glucan, mannan).
- Findings support the development of standardized animal models for studying C. auris pathogenesis and host-pathogen interactions.
More Related Videos
09:24Use of In Vivo Imaging to Screen for Morphogenesis Phenotypes in Candida albicans Mutant Strains During Active Infection in a Mammalian Host
Published on: October 12, 2022
03:24Author Spotlight: Enhancing Candida albicans Detection in Catheter Infections Using Fluorescent Protein Tagging
Published on: March 22, 2024
