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Interactions of Penicillium marneffei with human leukocytes in vitro
1The Evans Memorial Department of Clinical Research and the Department of Medicine, Boston University School of Medicine, Boston, Massachusetts 02118, USA.
Abstract:
Penicillium marneffei, a dimorphic fungus endemic in parts of Asia, causes disease in those with impaired cell-mediated immunity, especially persons with AIDS. The histopathology of penicilliosis marneffei features the intracellular infection of macrophages. We studied the interactions between human leukocytes and heat-killed yeast-phase P. marneffei. Monocyte-derived macrophages bound and internalized P. marneffei in the presence of complement-sufficient pooled human serum (PHS). Binding and phagocytosis were still seen if PHS was heat inactivated or omitted altogether. The binding of unopsonized P. marneffei to monocyte-derived macrophages occurred in the absence of divalent cations and was not affected by inhibitors of mannose and beta-glucan receptors or monoclonal antibodies directed against CD14 and CD11/CD18. Binding was profoundly inhibited by wheat germ agglutinin. A vigorous respiratory burst was seen in peripheral blood mononuclear cells (PBMC) stimulated with P. marneffei, regardless of whether the fungi were opsonized. However, tumor necrosis factor alpha (TNF-alpha) release from PBMC stimulated with P. marneffei occurred only if serum was present. These data demonstrate that (i) monocyte-derived macrophages bind and phagocytose P. marneffei even in the absence of opsonization, (ii) binding is divalent cation independent but is inhibited by wheat germ agglutinin, suggesting that the major receptor(s) recognizing P. marneffei is a glycoprotein with exposed N-acetyl-beta-D-glucosaminyl groups, (iii) P. marneffei stimulates the respiratory burst regardless of whether opsonins are present, and (iv) serum factors are required for P. marneffei to stimulate TNF-alpha release. The ability of unopsonized P. marneffei to parasitize mononuclear phagocytes without stimulating the production of TNF-alpha may be critical for the virulence of this intracellular parasite.
Insights
Penicillium marneffei infects macrophages without opsonization, utilizing a specific glycoprotein receptor. This fungus triggers a respiratory burst but requires serum for TNF-alpha release, aiding its virulence.
Area of Science:
- Medical Mycology
- Immunology
- Infectious Diseases
Background:
- Penicillium marneffei is a dimorphic fungus causing penicilliosis, particularly in immunocompromised individuals.
- Histopathology reveals intracellular infection of macrophages by P. marneffei.
- Understanding host-pathogen interactions is crucial for combating fungal infections.
Purpose of the Study:
- To investigate the interaction between human leukocytes and yeast-phase Penicillium marneffei.
- To elucidate the mechanisms of P. marneffei binding and phagocytosis by macrophages.
- To determine the inflammatory responses, including respiratory burst and cytokine release, induced by P. marneffei.
Main Methods:
- Studied interactions between monocyte-derived macrophages and heat-killed yeast-phase P. marneffei.
- Assessed fungal binding and internalization with and without pooled human serum (PHS).
- Investigated the role of divalent cations, specific receptors (mannose, beta-glucan, CD14, CD11/CD18), and wheat germ agglutinin in binding.
- Measured respiratory burst and tumor necrosis factor alpha (TNF-alpha) release from peripheral blood mononuclear cells (PBMC).
Main Results:
- Monocyte-derived macrophages bound and internalized P. marneffei without opsonization.
- Binding was independent of divalent cations but inhibited by wheat germ agglutinin, suggesting a glycoprotein receptor with N-acetyl-beta-D-glucosaminyl groups.
- P. marneffei stimulated a respiratory burst in PBMC irrespective of opsonization.
- TNF-alpha release required the presence of serum factors.
Conclusions:
- Macrophages can phagocytose unopsonized P. marneffei via a specific lectin-like interaction.
- P. marneffei evades early inflammatory signaling by not inducing TNF-alpha without serum.
- These mechanisms contribute to the intracellular parasite's virulence in hosts with compromised immunity.
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