Related Experiment Video
Updated: Jan 28, 2026

In Vivo Infection with Leishmania amazonensis to Evaluate Parasite Virulence in Mice
Published on: February 20, 2020
The Mouse Inhalation Model of Cryptococcus neoformans Infection Recapitulates Strain Virulence in Humans and Shows
Liliane Mukaremera1, Tami R McDonald2, Judith N Nielsen3
1Department of Microbiology and Immunology, University of Minnesota, Minneapolis, Minnesota, USA.
Abstract:
Cryptococcal meningitis (CM) causes high rates of HIV-related mortality, yet the Cryptococcus factors influencing patient outcome are not well understood. Pathogen-specific traits, such as the strain genotype and degree of antigen shedding, are associated with the clinical outcome, but the underlying biology remains elusive. In this study, we examined factors determining disease outcome in HIV-infected cryptococcal meningitis patients infected with Cryptococcus neoformans strains with the same multilocus sequence type (MLST). Both patient mortality and survival were observed during infections with the same sequence type. Disease outcome was not associated with the patient CD4 count. Patient mortality was associated with higher cryptococcal antigen levels, the cerebrospinal fluid (CSF) fungal burden by quantitative culture, and low CSF fungal clearance. The virulence of a subset of clinical strains with the same sequence type was analyzed using a mouse inhalation model of cryptococcosis. We showed a strong association between human and mouse mortality rates, demonstrating that the mouse inhalation model recapitulates human infection. Similar to human infection, the ability to multiply in vivo, demonstrated by a high fungal burden in lung and brain tissues, was associated with mouse mortality. Mouse survival time was not associated with single C. neoformans virulence factors in vitro or in vivo; rather, a trend in survival time correlated with a suite of traits. These observations show that MLST-derived genotype similarities between C. neoformans strains do not necessarily translate into similar virulence either in the mouse model or in human patients. In addition, our results show that in vitro assays do not fully reproduce in vivo conditions that influence C. neoformans virulence.
Insights
Cryptococcal meningitis outcomes in HIV patients are linked to fungal burden and clearance, not just strain type. Virulence depends on multiple traits, not single factors, and mouse models reflect human cryptococcosis.
Area of Science:
- Mycology
- Infectious Diseases
- Immunology
Background:
- Cryptococcal meningitis (CM) is a major cause of mortality in HIV patients.
- Pathogen factors influencing CM outcomes remain poorly understood.
- Strain genotype and antigen shedding are linked to clinical outcomes, but underlying biology is unclear.
Purpose of the Study:
- Investigate factors determining disease outcome in HIV-infected CM patients.
- Analyze virulence of Cryptococcus neoformans strains with the same multilocus sequence type (MLST).
- Evaluate the utility of a mouse inhalation model for recapitulating human infection.
Main Methods:
- Examined patient outcomes (mortality/survival) in HIV-CM patients infected with same MLST strains.
- Measured cryptococcal antigen levels, CSF fungal burden, and CSF fungal clearance.
- Assessed virulence of clinical strains in a mouse inhalation model of cryptococcosis.
Main Results:
- Patient mortality correlated with higher cryptococcal antigen levels, increased CSF fungal burden, and reduced CSF fungal clearance.
- Mouse model mortality strongly associated with human mortality, confirming model validity.
- In vivo fungal multiplication in lung and brain tissues linked to mouse mortality.
- No single C. neoformans virulence factor correlated with mouse survival; a suite of traits showed a trend.
Conclusions:
- MLST-derived genotype similarities do not guarantee similar virulence in C. neoformans strains.
- Virulence is multifactorial, influenced by a combination of traits rather than single factors.
- In vitro assays may not fully replicate in vivo conditions affecting C. neoformans virulence.
More Related Videos
06:15Evaluating Virulence and Pathogenesis of Aeromonas Infection in a Caenorhabditis elegans Model
Published on: December 20, 2018
11:32Following in Real Time the Impact of Pneumococcal Virulence Factors in an Acute Mouse Pneumonia Model Using Bioluminescent Bacteria
Published on: February 23, 2014
Related Concept Videos
Thermal Strain
Shearing Strain
Measurements of Strain
Strain Energy
Consider a rod that is fixed at one end and subjected to an axial force at the free end. This axial force induces stress within the rod, leading to its elongation. As the axial force increases, so does the elongation of the rod, illustrating a direct relationship between the force applied and the resulting...
Stress-Strain Diagram
Transformation of Plane Strain
Under plane strain conditions, typical for members where one dimension significantly exceeds the others, deformations and resultant strains are...