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Updated: Apr 11, 2026

Live-cell Video Microscopy of Fungal Pathogen Phagocytosis
Published on: January 9, 2013
Protection of Candida parapsilosis from neutrophil killing through internalization by human endothelial cells
Kyle A Glass1, Sarah J Longley, Joseph M Bliss
1a Department of Pediatrics; Women & Infants Hospital of Rhode Island ; Providence , RI , USA.
Abstract:
Candida parapsilosis is a fungal pathogen that is associated with hematogenously disseminated disease in premature neonates, acutely ill or immunocompromised patients. In cell culture, C. parapsilosis cells are actively and avidly endocytosed by endothelial cells via actin polymerization mediated by N-WASP. Here we present evidence that C. parapsilosis that were internalized by endothelial cells remained alive, and avoided being acidified or otherwise damaged via the host cell. Internalized fungal cells reproduced intracellularly and eventually burst out of the host endothelial cell. When neutrophils were added to endothelium and C. parapsilosis, they patrolled the endothelial surface and efficiently killed most adherent fungal cells prior to endocytosis. But after endocytosis by endothelial cells, internalized fungal cells evaded neutrophil killing. Silencing endothelial N-WASP blocked endocytosis of C. parapsilosis and left fungal cells stranded on the cell surface, where they were susceptible to neutrophil killing. These observations suggest that for C. parapsilosis to escape from the bloodstream, fungi may adhere to and be internalized by endothelial cells before being confronted and phagocytosed by a patrolling leukocyte. Once internalized by endothelial cells, C. parapsilosis may safely replicate to cause further rounds of infection. Immunosurveillance of the intravascular lumen by leukocytes crawling on the endothelial surface and rapid killing of adherent yeast may play a major role in controlling C. parapsilosis dissemination and infected endothelial cells may be a significant reservoir for fungal persistence.
Insights
Candida parapsilosis evades immune defenses by entering endothelial cells, where it survives, replicates, and escapes. Blocking this entry prevents fungal killing, highlighting endothelial cells as a reservoir for infection.
Area of Science:
- Mycology
- Immunology
- Cell Biology
Background:
- Candida parapsilosis is a significant fungal pathogen causing disseminated infections.
- Endothelial cells internalize C. parapsilosis via N-WASP-mediated actin polymerization.
- Neutrophils typically eliminate C. parapsilosis on endothelial surfaces.
Purpose of the Study:
- To investigate the intracellular survival and replication of C. parapsilosis within endothelial cells.
- To determine the role of endothelial N-WASP in C. parapsilosis endocytosis and subsequent immune evasion.
- To elucidate the interaction between C. parapsilosis, endothelial cells, and neutrophils in the context of dissemination.
Main Methods:
- In vitro cell culture models using endothelial cells and neutrophils.
- N-WASP silencing to inhibit endocytosis.
- Microscopy and cell viability assays to track fungal fate.
Main Results:
- Internalized C. parapsilosis survived and replicated within endothelial cells, avoiding host cell damage.
- Endocytosis by endothelial cells protected C. parapsilosis from neutrophil-mediated killing.
- Blocking endothelial N-WASP prevented fungal endocytosis, rendering C. parapsilosis susceptible to neutrophils.
Conclusions:
- Endothelial cell endocytosis is a critical mechanism for C. parapsilosis to evade immune surveillance and disseminate.
- Infected endothelial cells serve as a potential reservoir for persistent fungal infections.
- Targeting endothelial N-WASP could be a strategy to control C. parapsilosis dissemination.
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