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Visualizing Non-lytic Exocytosis of Cryptococcus neoformans from Macrophages Using Digital Light Microscopy
Published on: October 21, 2014
Cell-to-cell spread and massive vacuole formation after Cryptococcus neoformans infection of murine macrophages
Mauricio Alvarez1, Arturo Casadevall
1Department of Microbiology and Immunology, Albert Einstein College of Medicine, Bronx, NY 10461, USA. maalvare@aecom.yu.edu
Background:
The interaction between macrophages and Cryptococcus neoformans (Cn) is critical for containing dissemination of this pathogenic yeast. However, Cn can either lyse macrophages or escape from within them through a process known as phagosomal extrusion. Both events result in live extracellular yeasts capable of reproducing and disseminating in the extracellular milieu. Another method of exiting the intracellular confines of cells is through host cell-to-cell transfer of the pathogen, and this commonly occurs with the human immuno-deficiency virus (HIV) and CD4+ T cells and macrophages. In this report we have used time-lapse imaging to determine if this occurs with Cn.
Results:
Live imaging of Cryptococcus neoformans interactions with murine macrophages revealed cell-to-cell spread of yeast cells from infected donor cells to uninfected cells. Although this phenomenon was relatively rare its occurrence documents a new capacity for this pathogen to infect adjacent cells without exiting the intracellular space. Cell-to-cell spread appeared to be an actin-dependent process. In addition, we noted that cryptococcal phagosomal extrusion was followed by the formation of massive vacuoles suggesting that intracellular residence is accompanied by long lasting damage to host cells.
Conclusion:
C. neoformans can escape the intracellular confines of macrophages in an actin dependent manner by cell-to-cell transfer of the yeast leading to infection of adjacent cells. In addition, complete extrusion of internalized Cn cells can lead to the formation of a massive vacuole which may be a sign of damage to the host macrophage. These observations document new outcomes for the interaction of C. neoformans with host cells that provide precedents for cell biological effects that may contribute to the pathogenesis of cryptococcal infections.
Insights
Cryptococcus neoformans can spread between macrophages via cell-to-cell transfer, an actin-dependent process. This yeast also causes significant host cell damage through vacuole formation after extrusion, contributing to cryptococcal infection pathogenesis.
Area of Science:
- Cell biology
- Infectious disease
- Immunology
Background:
- Macrophages are key in controlling Cryptococcus neoformans (Cn) spread.
- Cn can lyse macrophages or exit via phagosomal extrusion, enabling dissemination.
- Cell-to-cell transfer is a known pathogen spread mechanism, seen with HIV.
Purpose of the Study:
- To investigate if Cryptococcus neoformans utilizes cell-to-cell transfer to spread between macrophages.
- To characterize the mechanisms and outcomes of Cn-macrophage interactions.
Main Methods:
- Utilized time-lapse live imaging to observe interactions between murine macrophages and Cryptococcus neoformans.
- Analyzed the role of actin in the observed cell-to-cell spread phenomenon.
Main Results:
- Observed cell-to-cell spread of Cryptococcus neoformans between infected and uninfected murine macrophages.
- Identified cell-to-cell spread as a rare but significant mechanism for pathogen transmission.
- Demonstrated that Cn cell-to-cell spread is an actin-dependent process.
- Noted that phagosomal extrusion of Cn led to massive vacuole formation, indicating host cell damage.
Conclusions:
- Cryptococcus neoformans employs actin-dependent cell-to-cell transfer to infect adjacent macrophages.
- Extrusion of Cn can result in large vacuoles, signifying substantial host cell damage.
- These findings reveal novel interactions contributing to the pathogenesis of cryptococcal infections.
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