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Passive Administration of Monoclonal Antibodies Against H. capsulatum and Others Fungal Pathogens
Published on: February 14, 2011
Human dendritic cell activity against Histoplasma capsulatum is mediated via phagolysosomal fusion
Lucy A Gildea1, Georgianne M Ciraolo, Randal E Morris
1Department of Internal Medicine, Division of Infectious Diseases, University of Cincinnati College of Medicine, OH 45267, USA.
Abstract:
Histoplasma capsulatum is a fungal pathogen that requires the induction of cell-mediated immunity (CMI) for host survival. We have demonstrated that human dendritic cells (DC) phagocytose H. capsulatum yeasts and, unlike human macrophages (Mø) that are permissive for intracellular growth, DC killed and degraded the fungus. In the present study, we sought to determine whether the mechanism(s) by which DC kill Histoplasma is via lysosomal hydrolases, via the production of toxic oxygen metabolites, or both. Phagosome-lysosome fusion (PL-fusion) was quantified by using fluorescein isothiocyanate-dextran and phase and fluorescence microscopy and by electron microscopy with horseradish peroxidase colloidal gold to label lysosomes. Unlike Mphi, Histoplasma-infected DC exhibited marked PL-fusion. The addition of suramin to Histoplasma-infected DC inhibited PL-fusion and DC fungicidal activity. Incubation of Histoplasma-infected DC at 18 degrees C also concomitantly reduced PL-fusion and decreased the capacity of DC to kill and degrade H. capsulatum yeasts. Further, culture of Histoplasma-infected DC in the presence of bafilomycin, an inhibitor of the vacuolar ATPase, did not block DC anti-Histoplasma activity, indicating that phagosome acidification was not required for lysosome enzyme activity. In contrast, culture of Histoplasma-infected DC in the presence of inhibitors of the respiratory burst or inhibitors of NO synthase had little to no effect on DC fungicidal activity. These data suggest that the major mechanism by which human DC mediate anti-Histoplasma activity is through the exposure of yeasts to DC lysosomal hydrolases. Thus, DC can override one of the strategies used by H. capsulatum yeasts to survive intracellularly within Mø.
Insights
Human dendritic cells (DC) kill Histoplasma by fusing phagosomes with lysosomes, releasing enzymes to degrade the fungus. This cell-mediated immunity mechanism differs from macrophages and targets fungal survival strategies.
Area of Science:
- Immunology
- Mycology
- Cell Biology
Background:
- Histoplasma capsulatum is a fungal pathogen requiring cell-mediated immunity (CMI) for host survival.
- Human dendritic cells (DCs) phagocytose H. capsulatum yeasts and kill them, unlike macrophages (Mø) which permit fungal growth.
- The mechanism by which DCs kill Histoplasma is investigated, focusing on lysosomal hydrolases and toxic oxygen metabolites.
Purpose of the Study:
- To determine if human dendritic cells kill Histoplasma via lysosomal hydrolases, toxic oxygen metabolites, or both.
- To elucidate the specific mechanisms of anti-Histoplasma activity mediated by dendritic cells.
Main Methods:
- Quantification of phagosome-lysosome fusion (PL-fusion) using microscopy and labeled lysosomes.
- Assessment of DC fungicidal activity in the presence of inhibitors (suramin, bafilomycin) and altered temperatures (18°C).
- Evaluation of the role of respiratory burst and NO synthase inhibitors on DC anti-Histoplasma activity.
Main Results:
- Histoplasma-infected DCs showed significant PL-fusion, unlike Mø.
- Inhibition of PL-fusion (suramin, 18°C) reduced DC fungicidal activity.
- Phagosome acidification was not required; respiratory burst and NO synthase played minimal roles in DC killing of Histoplasma.
Conclusions:
- The primary mechanism for human DC anti-Histoplasma activity involves lysosomal hydrolases.
- Dendritic cells effectively kill H. capsulatum yeasts by lysosomal degradation, overriding fungal survival tactics used in macrophages.
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