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Updated: May 11, 2026

Live-cell Video Microscopy of Fungal Pathogen Phagocytosis
Published on: January 9, 2013
Human endothelial cells internalize Candida parapsilosis via N-WASP-mediated endocytosis
Tatsushi Shintaku1, Kyle A Glass, Matthew P Hirakawa
1Department of Pediatrics, Women & Infants Hospital of Rhode Island, Providence, Rhode Island, USA.
Abstract:
Candida parapsilosis is a frequent cause of disseminated candidiasis and is associated with significant morbidity and mortality. Although important in pathogenesis, interactions of this organism with endothelial cells have received less attention than those of Candida albicans. Internalization of C. parapsilosis by monolayers of human endothelial cells was examined in an in vitro assay and compared to that of C. albicans. Both live and heat-killed yeast were efficiently internalized, with heat-killed yeast subsequently being detected in an acidic subcompartment. Internalization was marked by a process of engulfment by thin membrane extensions from the endothelium. Efficiency of internalization differed among different clinical isolates and species of yeast. Opsonization of C. parapsilosis by serum factors was not sufficient to cause endocytosis; instead, serum appeared to directly stimulate endothelial uptake. Colocalization of endothelial actin and N-WASP at sites of C. parapsilosis internalization was observed. A Förster-resonance energy transfer (FRET) probe for N-WASP activity showed active N-WASP at sites of internalization for both live and heat-killed C. parapsilosis and C. albicans. An actin nucleation inhibitor (cytochalasin D) and an N-WASP inhibitor (wiskostatin) both inhibited uptake of heat-killed C. parapsilosis, as did short interfering RNA-mediated ablation of N-WASP. Thus, endocytosis by endothelial cells may represent a means of traversal of the blood vessel wall by yeast during disseminated candidiasis, and N-WASP may play a key role in the process.
Insights
Candida parapsilosis yeast invades human endothelial cells via engulfment, a process crucial for disseminated candidiasis. This uptake is mediated by N-WASP, a protein essential for actin nucleation.
Area of Science:
- Mycology
- Cell Biology
- Infectious Diseases
Background:
- Candida parapsilosis is a significant cause of candidiasis, leading to high morbidity and mortality.
- Endothelial cell interactions with C. parapsilosis are less understood compared to Candida albicans.
- Understanding these interactions is key to addressing disseminated candidiasis.
Purpose of the Study:
- To investigate the mechanisms of C. parapsilosis internalization by human endothelial cells.
- To compare C. parapsilosis uptake with that of C. albicans.
- To identify key molecular players, such as N-WASP, in this process.
Main Methods:
- In vitro assay using human endothelial cell monolayers.
- Comparison of live and heat-killed yeast internalization.
- Microscopy, Förster-resonance energy transfer (FRET) probes, and pharmacological/genetic inhibition (cytochalasin D, wiskostatin, siRNA).
Main Results:
- Both live and heat-killed C. parapsilosis were efficiently internalized by endothelial cells through engulfment.
- Internalization efficiency varied among yeast isolates and species.
- N-WASP and actin colocalization occurred at internalization sites, and N-WASP activity was confirmed using FRET.
- Inhibiting actin nucleation or N-WASP function reduced yeast uptake.
Conclusions:
- Endothelial cell endocytosis of C. parapsilosis may facilitate blood vessel wall traversal during disseminated candidiasis.
- N-WASP plays a critical role in mediating the uptake of C. parapsilosis by endothelial cells.
- These findings offer insights into fungal pathogenesis and potential therapeutic targets.
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