Neutrophils are key players during Candida albicans infection. However, the relative contributions of neutrophil activities to fungal clearance and the relative importance of the fungal responses that counteract these activities remain unclear. We studied the contributions of the intra- and extracellular antifungal activities of human neutrophils using diagnostic Green Fluorescent Protein (GFP)-marked C. albicans strains. We found that a carbohydrate starvation response, as indicated by upregulation of glyoxylate cycle genes, was only induced upon phagocytosis of the fungus. Similarly, the nitrosative stress response was only observed in internalised fungal cells. In contrast, the response to oxidative stress was observed in both phagocytos...
ABSTRACT Immune cells exploit reactive oxygen species (ROS) and cationic fluxes to kill microbial pa...
Metabolic adaptation, and in particular the modulation of carbon assimilatory pathways during diseas...
Immune cells exploit reactive oxygen species (ROS) and cationic fluxes to kill microbial pathogens, ...
Neutrophils are key players during Candida albicans infection. However, the relative contributions o...
Neutrophils are key players during Candida albicans infection. However, the relative contributions o...
Neutrophils are key players during Candida albicans infection. However, the relative contributions o...
Neutrophils are key players during Candida albicans infection. However, the relative contributions o...
<div><p>Neutrophils are key players during <em>Candida albicans</em> infection. However, the relativ...
Neutrophils are key players during Candida albicans infection. However, the relative contributions o...
Neutrophils are key players during Candida albicans infection. However, the relative contributions o...
Acknowledgments We thank Alexander Johnson (yhb1D/D), Karl Kuchler (sodD/D mutants), Janet Quinn (ho...
Immune cells exploit reactive oxygen species (ROS) and cationic fluxes to kill microbial pathogens, ...
Immune cells exploit reactive oxygen species (ROS) and cationic fluxes to kill microbial pathogens, ...
Immune cells exploit reactive oxygen species (ROS) and cationic fluxes to kill microbial pathogens, ...
This is the final version. Available on open access from the American Society for Microbiology via t...
ABSTRACT Immune cells exploit reactive oxygen species (ROS) and cationic fluxes to kill microbial pa...
Metabolic adaptation, and in particular the modulation of carbon assimilatory pathways during diseas...
Immune cells exploit reactive oxygen species (ROS) and cationic fluxes to kill microbial pathogens, ...
Neutrophils are key players during Candida albicans infection. However, the relative contributions o...
Neutrophils are key players during Candida albicans infection. However, the relative contributions o...
Neutrophils are key players during Candida albicans infection. However, the relative contributions o...
Neutrophils are key players during Candida albicans infection. However, the relative contributions o...
<div><p>Neutrophils are key players during <em>Candida albicans</em> infection. However, the relativ...
Neutrophils are key players during Candida albicans infection. However, the relative contributions o...
Neutrophils are key players during Candida albicans infection. However, the relative contributions o...
Acknowledgments We thank Alexander Johnson (yhb1D/D), Karl Kuchler (sodD/D mutants), Janet Quinn (ho...
Immune cells exploit reactive oxygen species (ROS) and cationic fluxes to kill microbial pathogens, ...
Immune cells exploit reactive oxygen species (ROS) and cationic fluxes to kill microbial pathogens, ...
Immune cells exploit reactive oxygen species (ROS) and cationic fluxes to kill microbial pathogens, ...
This is the final version. Available on open access from the American Society for Microbiology via t...
ABSTRACT Immune cells exploit reactive oxygen species (ROS) and cationic fluxes to kill microbial pa...
Metabolic adaptation, and in particular the modulation of carbon assimilatory pathways during diseas...
Immune cells exploit reactive oxygen species (ROS) and cationic fluxes to kill microbial pathogens, ...