Related Experiment Video
Updated: May 5, 2026

Combining Human Organoids and Organ-on-a-Chip Technology to Model Intestinal Region-Specific Functionality
Published on: May 5, 2022
Breaking Barriers: Candidalysin Disrupts Epithelial Integrity and Induces Inflammation in a Gut-on-Chip Model
Moran Morelli1, Karla Queiroz1
1MIMETAS B.V., De Limes 7, 2342 DH Oegstgeest, The Netherlands.
Abstract:
Candida albicans is an opportunistic pathogenic yeast commonly found in the gastrointestinal tract of healthy humans. Under certain conditions, it can become invasive and cause life-threatening systemic infections. One mechanism used by C.albicans to breach the epithelial barrier is the secretion of candidalysin, a cytolytic peptide toxin. Candidalysin damages epithelial membranes and activates the innate immune response, making it key to C.albicans' pathogenicity and a promising therapeutic target. Although candidalysin mediates C. albicans translocation through intestinal layers, its impact on epithelial responses is not fully understood. This study aims to characterize this response and develop scalable, quantitative methodologies to assess candidalysin's toxicological effects using gut-on-chip models. We used the OrganoPlate® platform to expose Caco-2 tubules to candidalysin and evaluated their response with trans-epithelial electrical resistance (TEER), protein detection, and immunostaining. We then validated our findings in a proof-of-concept experiment using human intestinal organoid tubules. Candidalysin impaired barrier integrity, induced actin remodeling, and increased cell permeability. It also induced the release of LDH, cytokines, and the antimicrobial peptide LL37, suggesting cellular damage, inflammation, and antimicrobial activity. This study strengthens our understanding of candidalysin's role in C. albicans pathogenesis and suggests new therapeutic strategies targeting this toxin. Moreover, patient-derived organoids show promise for capturing patient heterogeneity and developing personalized treatments.
Insights
Candida albicans candidalysin damages the gut barrier, causing inflammation and cellular damage. This study develops gut-on-chip models to assess candidalysin
Area of Science:
- Microbiology
- Pathogenesis
- Toxicology
Background:
- Candida albicans is an opportunistic pathogen causing systemic infections.
- Candidalysin, a toxin secreted by C. albicans, breaches epithelial barriers.
- The precise impact of candidalysin on epithelial responses requires further characterization.
Purpose of the Study:
- To characterize epithelial responses to candidalysin.
- To develop scalable, quantitative methods for assessing candidalysin's toxicological effects.
- To utilize gut-on-chip models for studying candidalysin-induced damage.
Main Methods:
- Exposure of Caco-2 tubules to candidalysin on the OrganoPlate® platform.
- Evaluation of barrier integrity using trans-epithelial electrical resistance (TEER).
- Assessment of cellular damage and immune response via protein detection (LDH, cytokines, LL37) and immunostaining.
Main Results:
- Candidalysin impaired epithelial barrier integrity and increased cell permeability.
- Actin remodeling and cellular damage were observed.
- Release of LDH, cytokines, and LL37 indicated inflammation and antimicrobial activity.
Conclusions:
- Candidalysin plays a significant role in C. albicans pathogenesis by damaging epithelial barriers.
- Gut-on-chip models provide a robust platform for studying candidalysin's effects.
- Targeting candidalysin offers potential therapeutic strategies against C. albicans infections.
More Related Videos
Related Concept Videos
Inflammatory Bowel Disease II: Ulcerative Colitis
Inflammatory Bowel Disease III: Crohn's Disease

