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Assessing Anti-fungal Activity of Isolated Alveolar Macrophages by Confocal Microscopy
Published on: July 9, 2014
Human macrophages do not require phagosome acidification to mediate fungistatic/fungicidal activity against
Simon L Newman1, Lisa Gootee, Jeremy Hilty
1Department of Medicine, Division of Infectious Diseases, University of Cincinnati College of Medicine, OH 45267, USA. newmansl@email.uc.edu
Abstract:
Histoplasma capsulatum (Hc) is a facultative intracellular fungus that modulates the intraphagosomal environment to survive within macrophages (Mphi). In the present study, we sought to quantify the intraphagosomal pH under conditions in which Hc yeasts replicated or were killed. Human Mphi that had ingested both viable and heat-killed or fixed yeasts maintained an intraphagosomal pH of approximately 6.4-6.5 over a period of several hours. These results were obtained using a fluorescent ratio technique and by electron microscopy using the 3-(2,4-dinitroanilo)-3'-amino-N-methyldipropylamine reagent. Mphi that had ingested Saccharomyces cerevisae, a nonpathogenic yeast that is rapidly killed and degraded by Mphi, also maintained an intraphagosomal pH of approximately 6.5 over a period of several hours. Stimulation of human Mphi fungicidal activity by coculture with chloroquine or by adherence to type 1 collagen matrices was not reversed by bafilomycin, an inhibitor of the vacuolar ATPase. Human Mphi cultured in the presence of bafilomycin also completely degraded heat-killed Hc yeasts, whereas mouse peritoneal Mphi digestion of yeasts was completely reversed in the presence of bafilomycin. However, bafilomycin did not inhibit mouse Mphi fungistatic activity induced by IFN-gamma. Thus, human Mphi do not require phagosomal acidification to kill and degrade Hc yeasts, whereas mouse Mphi do require acidification for fungicidal but not fungistatic activity.
Insights
Histoplasma capsulatum survival in macrophages depends on intraphagosomal pH. Human macrophages kill this fungus without acidification, unlike mouse macrophages, which require it for fungicidal activity.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Histoplasma capsulatum (Hc) is an intracellular fungus that survives within macrophages (Mphi) by altering the phagosome.
- Understanding the intraphagosomal environment is crucial for developing antifungal strategies.
Purpose of the Study:
- To quantify the intraphagosomal pH during Hc yeast replication and killing in human macrophages.
- To investigate the role of phagosomal acidification in Hc killing by human and mouse macrophages.
Main Methods:
- Fluorescent ratio technique to measure intraphagosomal pH.
- Electron microscopy using a specific reagent (3-(2,4-dinitroanilo)-3'-amino-N-methyldipropylamine).
- Treatment with bafilomycin (vacuolar ATPase inhibitor) to assess the role of acidification.
Main Results:
- Human Mphi maintained an intraphagosomal pH of ~6.5 with viable or killed Hc, and also with Saccharomyces cerevisae.
- Human Mphi degraded heat-killed Hc even with bafilomycin, indicating no requirement for acidification.
- Mouse Mphi fungicidal activity was reversed by bafilomycin, showing dependence on acidification, but fungistatic activity was not affected.
Conclusions:
- Human macrophages do not require phagosomal acidification to kill and degrade Hc.
- Phagosomal acidification is essential for fungicidal activity in mouse macrophages but not for fungistatic activity.
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