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Published on: January 9, 2013
Candida albicans stimulates arachidonic acid liberation from alveolar macrophages through alpha-mannan and
M Castro1, N V Ralston, T I Morgenthaler
1Department of Internal Medicine, Mayo Clinic and Foundation, Rochester, Minnesota 55905.
Abstract:
Candida albicans is an increasingly important fungal pathogen. Alveolar macrophages respond to fungal components such as zymosan by releasing arachidonic acid (AA) and AA metabolites. However, few studies hypothesized that macrophages respond to C. albicans by releasing AA and generating AA metabolites as a consequence of interaction of mannose and beta-glucan receptors with fungal cell wall components. [14C]AA-labeled rabbit alveolar macrophages released AA following stimulation with either live or heat-killed C. albicans. High-pressure liquid chromatography analysis revealed that 55% of the AA released was metabolized via cyclooxygenase and lipoxygenase pathways. The metabolites consisted of prostaglandin E2, prostaglandin F2 alpha, 6-ketoprostaglandin F1 alpha, thromboxane B2, and leukotrienes B4 and D4. We further examined the roles of alpha-mannan and beta-glucan components of C. albicans in mediating these alterations of eicosanoid metabolism. Prior work in our laboratory has shown that soluble alpha-mannan and beta-glucan inhibit macrophage mannose and beta-glucan receptors, respectively. Incubation of alveolar macrophages with soluble alpha-mannan derived from C. albicans (1 mg/ml) resulted in 49.8% +/- 2.6% inhibition of macrophage AA release during stimulation with intact C. albicans (P = 0.0001 versus control). Macrophage AA release in response to C. albicans was also inhibited to a significant but lesser degree by soluble beta-glucan (36.2% +/- 1.3%; P = 0.008 versus control). These results indicate that C. albicans stimulates macrophage AA metabolism and that these effects are partly mediated by alpha-mannan and beta-glucan constituents of the fungus.
Insights
Candida albicans triggers alveolar macrophages to release arachidonic acid (AA) and its metabolites. Fungal alpha-mannan and beta-glucan components partially mediate this response by interacting with macrophage receptors.
Area of Science:
- Immunology
- Mycology
- Biochemistry
Background:
- Candida albicans is a significant fungal pathogen.
- Alveolar macrophages are key immune cells responding to fungal components.
- The role of specific fungal cell wall components in macrophage eicosanoid metabolism is not fully understood.
Purpose of the Study:
- To investigate if Candida albicans stimulates alveolar macrophages to release arachidonic acid (AA) and its metabolites.
- To determine the role of alpha-mannan and beta-glucan from C. albicans in mediating these responses.
Main Methods:
- [14C]AA-labeled rabbit alveolar macrophages were stimulated with live or heat-killed C. albicans.
- High-pressure liquid chromatography (HPLC) was used to analyze AA metabolites.
- Soluble alpha-mannan and beta-glucan were used to inhibit macrophage receptors and assess their impact on AA release.
Main Results:
- Stimulation with C. albicans led to the release of AA, with 55% metabolized via cyclooxygenase and lipoxygenase pathways.
- Identified metabolites include prostaglandins and leukotrienes.
- Soluble alpha-mannan inhibited AA release by 49.8%, while soluble beta-glucan inhibited it by 36.2%.
Conclusions:
- Candida albicans significantly stimulates macrophage arachidonic acid metabolism.
- Alpha-mannan and beta-glucan constituents of C. albicans are partly responsible for this effect.
- These findings highlight the importance of fungal cell wall components in modulating host immune responses.
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