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Updated: Mar 20, 2026

Morphological and Compositional Analysis of Neutrophil Extracellular Traps Induced by Microbial and Chemical Stimuli
Published on: November 4, 2022
Neutrophil Attack Triggers Extracellular Trap-Dependent Candida Cell Wall Remodeling and Altered Immune Recognition
Alex Hopke1, Nadine Nicke1, Erica E Hidu1
1Molecular and Biomedical Sciences, University of Maine, Orono, Maine, United States of America.
Abstract:
Pathogens hide immunogenic epitopes from the host to evade immunity, persist and cause infection. The opportunistic human fungal pathogen Candida albicans, which can cause fatal disease in immunocompromised patient populations, offers a good example as it masks the inflammatory epitope β-glucan in its cell wall from host recognition. It has been demonstrated previously that β-glucan becomes exposed during infection in vivo but the mechanism behind this exposure was unknown. Here, we show that this unmasking involves neutrophil extracellular trap (NET) mediated attack, which triggers changes in fungal cell wall architecture that enhance immune recognition by the Dectin-1 β-glucan receptor in vitro. Furthermore, using a mouse model of disseminated candidiasis, we demonstrate the requirement for neutrophils in triggering these fungal cell wall changes in vivo. Importantly, we found that fungal epitope unmasking requires an active fungal response in addition to the stimulus provided by neutrophil attack. NET-mediated damage initiates fungal MAP kinase-driven responses, particularly by Hog1, that dynamically relocalize cell wall remodeling machinery including Chs3, Phr1 and Sur7. Neutrophil-initiated cell wall disruptions augment some macrophage cytokine responses to attacked fungi. This work provides insight into host-pathogen interactions during disseminated candidiasis, including valuable information about how the C. albicans cell wall responds to the biotic stress of immune attack. Our results highlight the important but underappreciated concept that pattern recognition during infection is dynamic and depends on the host-pathogen dialog.
Insights
Neutrophil attacks expose hidden fungal epitopes, like beta-glucan, on Candida albicans. This fungal cell wall remodeling enhances immune recognition during disseminated candidiasis infections.
Area of Science:
- Mycology
- Immunology
- Cell Biology
Background:
- Pathogens mask immunogenic epitopes to evade host immunity.
- Candida albicans masks beta-glucan, an inflammatory epitope, in its cell wall.
- The mechanism of beta-glucan exposure during infection was previously unknown.
Purpose of the Study:
- To elucidate the mechanism of beta-glucan exposure on Candida albicans during host-pathogen interactions.
- To investigate the role of neutrophils in triggering fungal cell wall changes.
- To understand the dynamic host-pathogen dialog in disseminated candidiasis.
Main Methods:
- In vitro studies using neutrophil extracellular trap (NET) mediated attack.
- In vivo studies using a mouse model of disseminated candidiasis.
- Analysis of fungal cell wall architecture and immune recognition by Dectin-1 receptor.
- Investigation of fungal MAP kinase pathways (Hog1) and cell wall remodeling machinery.
Main Results:
- NET-mediated attack triggers changes in fungal cell wall architecture, exposing beta-glucan.
- Neutrophils are required for these fungal cell wall changes in vivo.
- Fungal epitope unmasking requires an active fungal response, including MAP kinase activation.
- Neutrophil-initiated damage augments macrophage cytokine responses to fungi.
Conclusions:
- Neutrophil attack dynamically alters Candida albicans cell wall architecture, enhancing immune recognition.
- Host-pathogen dialog is crucial for dynamic pattern recognition during infection.
- This study provides insights into C. albicans response to immune attack and disseminated candidiasis pathogenesis.
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