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Updated: May 6, 2026

Live-cell Video Microscopy of Fungal Pathogen Phagocytosis
Published on: January 9, 2013
Altered dynamics of Candida albicans phagocytosis by macrophages and PMNs when both phagocyte subsets are present
Fiona M Rudkin1, Judith M Bain, Catriona Walls
1Aberdeen Fungal Group, Institute of Medical Sciences, University of Aberdeen, Aberdeen, United Kingdom.
Unlabelled:
An important first line of defense against Candida albicans infections is the killing of fungal cells by professional phagocytes of the innate immune system, such as polymorphonuclear cells (PMNs) and macrophages. In this study, we employed live-cell video microscopy coupled with dynamic image analysis tools to provide insights into the complexity of C. albicans phagocytosis when macrophages and PMNs were incubated with C. albicans alone and when both phagocyte subsets were present. When C. albicans cells were incubated with only one phagocyte subtype, PMNs had a lower overall phagocytic capacity than macrophages, despite engulfing fungal cells at a higher rate once fungal cells were bound to the phagocyte surface. PMNs were more susceptible to C. albicans-mediated killing than macrophages, irrespective of the number of C. albicans cells ingested. In contrast, when both phagocyte subsets were studied in coculture, the two cell types phagocytosed and cleared C. albicans at equal rates and were equally susceptible to killing by the fungus. The increase in macrophage susceptibility to C. albicans-mediated killing was a consequence of macrophages taking up a higher proportion of hyphal cells under these conditions. In the presence of both PMNs and macrophages, C. albicans yeast cells were predominantly cleared by PMNs, which migrated at a greater speed toward fungal cells and engulfed bound cells more rapidly. These observations demonstrate that the phagocytosis of fungal pathogens depends on, and is modified by, the specific phagocyte subsets present at the site of infection.
Importance:
Extensive work investigating fungal cell phagocytosis by macrophages and PMNs of the innate immune system has been carried out. These studies have been informative but have examined this phenomenon only when one phagocyte subset is present. The current study employed live-cell video microscopy to break down C. albicans phagocytosis into its component parts and examine the effect of a single phagocyte subset, versus a mixed phagocyte population, on these individual stages. Through this approach, we identified that the rate of fungal cell engulfment and rate of phagocyte killing altered significantly when both macrophages and PMNs were incubated in coculture with C. albicans compared to the rate of either phagocyte subset incubated alone with the fungus. This research highlights the significance of studying pathogen-host cell interactions with a combination of phagocytes in order to gain a greater understanding of the interactions that occur between cells of the host immune system in response to fungal invasion.
Insights
Phagocyte subsets like macrophages and polymorphonuclear cells (PMNs) interact differently with Candida albicans. Their combined presence alters fungal cell clearance and killing rates, highlighting the importance of mixed immune cell populations in infection defense.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Professional phagocytes, including macrophages and polymorphonuclear cells (PMNs), are crucial for innate immunity against Candida albicans infections.
- Previous studies have largely investigated phagocytosis by single phagocyte subsets, limiting understanding of complex immune responses.
Purpose of the Study:
- To investigate the phagocytosis of Candida albicans by macrophages and PMNs, both individually and in co-culture, using live-cell video microscopy.
- To elucidate how the presence of mixed phagocyte populations influences fungal cell clearance and phagocyte susceptibility to fungal killing.
Main Methods:
- Live-cell video microscopy was employed to dynamically analyze Candida albicans phagocytosis.
- Image analysis tools were used to quantify fungal cell engulfment, clearance rates, and phagocyte killing.
Main Results:
- Individually, PMNs showed higher engulfment rates but lower overall phagocytic capacity and higher susceptibility to fungal killing than macrophages.
- In co-culture, both cell types exhibited equal phagocytosis and clearance rates, with macrophages becoming more susceptible to killing due to increased hyphal cell uptake.
- When both PMNs and macrophages were present, PMNs predominantly cleared yeast cells due to faster migration and engulfment.
Conclusions:
- The phagocytosis and clearance dynamics of Candida albicans are significantly modified by the presence of mixed phagocyte populations.
- Studying pathogen-host interactions within a mixed phagocyte environment is essential for a comprehensive understanding of immune responses to fungal invasion.

