Related Experiment Video
Updated: Dec 18, 2025

Automation of Bio-Atomic Force Microscope Measurements on Hundreds of C. albicans Cells
Published on: April 2, 2021
Caspofungin Induced Cell Wall Changes of Candida Species Influences Macrophage Interactions
Louise A Walker1, Carol A Munro1
1School of Medicine, Medical Sciences and Nutrition, Institute of Medical Sciences, University of Aberdeen, Aberdeen, United Kingdom.
Abstract:
Candida species are known to differ in their ability to cause infection and have been shown to display varied susceptibilities to antifungal drugs. Treatment with the echinocandin, caspofungin, leads to compensatory alterations in the fungal cell wall. This study was performed to compare the structure and composition of the cell walls of different Candida species alone and in response to caspofungin treatment, and to evaluate how changes at the fungal cell surface affects interactions with macrophages. We demonstrated that the length of the outer fibrillar layer varied between Candida species and that, in most cases, reduced fibril length correlated with increased exposure of β-1,3-glucan on the cell surface. Candida glabrata and Candida guilliermondii, which had naturally more β-1,3-glucan exposed on the cell surface, were phagocytosed significantly more efficiently by J774 macrophages. Treatment with caspofungin resulted in increased exposure of chitin and β-1,3-glucan on the surface of the majority of Candida species isolates that were tested, with the exception of C. glabrata and Candida parapsilosis isolates. This increase in exposure of the inner cell wall polysaccharides, in most cases, correlated with reduced uptake by macrophages and in turn, a decrease in production of TNFα. Here we show that differences in the exposure of cell wall carbohydrates and variations in the repertoire of covalently attached surface proteins of different Candida species contributes to their recognition by immune cells.
Insights
Candida species
Area of Science:
- Mycology
- Immunology
- Biochemistry
Background:
- Candida species exhibit varying infection capabilities and antifungal drug susceptibilities.
- Echinocandin treatment, like caspofungin, induces compensatory changes in the fungal cell wall.
- Understanding these cell wall alterations is crucial for predicting host-pathogen interactions.
Purpose of the Study:
- To compare the structure and composition of Candida species' cell walls.
- To investigate cell wall changes induced by caspofungin treatment.
- To evaluate how fungal cell surface modifications impact macrophage interactions.
Main Methods:
- Comparative analysis of Candida species cell wall structure and composition.
- Assessment of cell wall alterations following caspofungin exposure.
- Evaluation of macrophage phagocytosis and cytokine production (TNFα) in response to Candida isolates.
Main Results:
- Fibril length and β-1,3-glucan exposure varied significantly among Candida species.
- Higher β-1,3-glucan exposure correlated with increased macrophage phagocytosis for C. glabrata and C. guilliermondii.
- Caspofungin treatment increased chitin and β-1,3-glucan exposure in most species, reducing macrophage uptake and TNFα production, except in C. glabrata and C. parapsilosis.
Conclusions:
- Differences in Candida cell wall carbohydrates and surface proteins influence immune cell recognition.
- Fungal cell wall composition is a key determinant of host immune responses.
- Targeting cell wall components could modulate Candida-macrophage interactions and antifungal efficacy.

