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Updated: May 1, 2026

Deep Dermal Injection As a Model of Candida albicans Skin Infection for Histological Analyses
Published on: June 13, 2018
Fungal invasion of epithelial cells
Weiming Yang1, Lei Yan1, Chunrong Wu1
1Department of Trauma-Emergency & Critical Care Medicine, Shanghai Fifth People's Hospital, Fudan University, Shanghai 200240, PR China.
Abstract:
Interaction between host cells and invasive Candida plays a large role in the pathogenicity of Candida species. Fungal-induced endocytosis and active penetration are the two distinct, yet complementary invasion mechanisms of invasive candidiasis. Induced endocytosis is a microorganism-triggered, epithelial-driven, clathrin-mediated and actin-dependent process. During the fundamental pathological process of induced endocytosis, invasins (Als3 and Ssa1), which mediate the binding of host epithelial surface proteins, are expressed by Candida species on the hyphal surface. Sequentially, the interaction between invasins and host epithelial surface proteins stimulates the recruitment of clathrin, dynamin and cortactin to the sites where Candida enters epithelial cells, which in turn induce the actin cytoskeleton reorganization. Actin cytoskeleton provides the force required for fungal internalization. Parallely, active penetration of Candida can directly pass through epithelial cells possibly due to progressive elongation of hyphae and physical forces. Several molecules, such as secreted hydrolases and Als3, can affect the protective barrier of the epithelium and make Candida actively penetrate into epithelial cells through intercellular gaps of epithelial layers.
Insights
Candida species invade host cells through two main mechanisms: fungal-induced endocytosis and active penetration. These processes are crucial for understanding invasive candidiasis pathogenicity.
Area of Science:
- Microbiology
- Cell Biology
- Pathogenesis
Background:
- Invasive candidiasis is a significant health concern.
- Understanding Candida species' invasion mechanisms is key to combating pathogenicity.
Purpose of the Study:
- To elucidate the distinct invasion mechanisms of Candida species into host epithelial cells.
- To detail the molecular players and processes involved in fungal entry.
Main Methods:
- Analysis of host-cell and fungal interactions during invasion.
- Identification of key fungal invasins (e.g., Als3, Ssa1) and host cell components (e.g., clathrin, dynamin, cortactin).
- Investigation of actin cytoskeleton's role in fungal internalization.
Main Results:
- Two primary invasion pathways identified: induced endocytosis and active penetration.
- Induced endocytosis is clathrin-mediated and actin-dependent, involving fungal invasins binding to host proteins.
- Active penetration involves hyphal elongation and disruption of epithelial barriers by fungal molecules.
Conclusions:
- Candida species employ sophisticated strategies to breach host defenses.
- Both endocytosis and active penetration contribute to the invasive nature of Candida infections.
- Targeting these invasion mechanisms could offer new therapeutic strategies.
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