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Updated: Jan 27, 2026

Macrophage Cholesterol Depletion and Its Effect on the Phagocytosis of Cryptococcus neoformans
Published on: December 19, 2014
Inflammatory monocytes are detrimental to the host immune response during acute infection with Cryptococcus
Lena J Heung1, Tobias M Hohl1,2
1Infectious Diseases Service, Department of Medicine, Memorial Sloan Kettering Cancer Center, New York, New York, United States of America.
Abstract:
Cryptococcus neoformans is a leading cause of invasive fungal infections among immunocompromised patients. However, the cellular constituents of the innate immune response that promote clearance versus progression of infection upon respiratory acquisition of C. neoformans remain poorly defined. In this study, we found that during acute C. neoformans infection, CCR2+ Ly6Chi inflammatory monocytes (IM) rapidly infiltrate the lungs and mediate fungal trafficking to lung-draining lymph nodes. Interestingly, this influx of IM is detrimental to the host, since ablating IM or impairing their recruitment to the lungs improves murine survival and reduces fungal proliferation and dissemination. Using a novel conditional gene deletion strategy, we determined that MHC class II expression by IM did not mediate their deleterious impact on the host. Furthermore, although ablation of IM reduced the number of lymphocytes, innate lymphoid cells, and eosinophils in the lungs, the effects of IM were not dependent on these cells. We ascertained that IM in the lungs upregulated transcripts associated with alternatively activated (M2) macrophages in response to C. neoformans, consistent with the model that IM assume a cellular phenotype that is permissive for fungal growth. We also determined that conditional knockout of the prototypical M2 marker arginase 1 in IM and deletion of the M2-associated transcription factor STAT6 were not sufficient to reverse the harmful effects of IM. Overall, our findings indicate that C. neoformans can subvert the fungicidal potential of IM to enable the progression of infection through a mechanism that is not dependent on lymphocyte priming, eosinophil recruitment, or downstream M2 macrophage polarization pathways. These results give us new insight into the plasticity of IM function during fungal infections and the level of control that C. neoformans can exert on host immune responses.
Insights
Inflammatory monocytes (IM) infiltrate lungs during Cryptococcus neoformans infection, worsening outcomes. Blocking these immune cells improves survival by reducing fungal spread, revealing a novel mechanism of fungal pathogenesis.
Area of Science:
- Immunology
- Mycology
- Infectious Diseases
Background:
- Cryptococcus neoformans causes severe fungal infections in immunocompromised individuals.
- The specific immune cells driving C. neoformans infection progression after lung entry are not fully understood.
Purpose of the Study:
- To identify innate immune cells involved in C. neoformans lung infection.
- To elucidate the mechanisms by which these cells influence fungal clearance or dissemination.
Main Methods:
- Investigated the role of CCR2+ Ly6Chi inflammatory monocytes (IM) in a murine model of C. neoformans pneumonia.
- Utilized conditional gene deletion strategies to assess the function of specific genes (MHC class II, arginase 1, STAT6) in IM.
- Analyzed immune cell populations and fungal burden in lungs and lymph nodes.
Main Results:
- CCR2+ inflammatory monocytes rapidly infiltrate lungs and promote C. neoformans dissemination to lymph nodes.
- Depleting IM or inhibiting their recruitment significantly improves host survival and reduces fungal load.
- IM's detrimental effect is independent of MHC class II expression, lymphocytes, eosinophils, and canonical M2 macrophage markers (arginase 1, STAT6).
Conclusions:
- C. neoformans subverts inflammatory monocytes, promoting fungal growth and infection progression.
- This immune evasion mechanism does not rely on adaptive immunity or M2 polarization pathways.
- Findings highlight the plasticity of inflammatory monocyte function and C. neoformans' control over host immunity.
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