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Updated: Jan 30, 2026

Modeling Mucosal Candidiasis in Larval Zebrafish by Swimbladder Injection
Published on: November 27, 2014
Meteorin-like is associated with poor outcome in invasive candidiasis in mouse models and in humans
Jiayu Liu1,2, Hao Ding1, Wang Tan1
1Department of Laboratory Medicine, First Affiliated Hospital of Chongqing Medical University, Chongqing 400016, China.
Abstract:
Invasive candidiasis is a leading cause of nosocomial bloodstream infection associated with high mortality, and there is a pressing need to develop biomarker-guided antifungal therapy to improve clinical outcomes. Meteorin-like (METRNL) is a cytokine that can act as a high-affinity ligand for the stem cell factor receptor KIT; however, the functional role of METRNL in fungal infection remains unclear. Here, we found that METRNL acts as a disease-promoting immune checkpoint to facilitate invasive Candida albicans (C. albicans) infection. Mice deficient in METRNL were refractory to a lethal systemic infection with C. albicans. Treatment with a METRNL blocking antibody protected mice from invasive C. albicans infection, whereas treatment with recombinant METRNL or overexpression of endogenous METRNL dampened fungal clearance and aggravated disease mortality but not in mice with macrophage-specific deletion of KIT. The METRNL-KIT axis decreased dectin-1 expression and impaired fungal phagocytosis and killing capacity in macrophages, which was dependent on signal transducer and activator of transcription 3 signaling, thereby negatively regulating host antifungal immunity. In two independent cohorts, patients with candidemia had elevated circulating METRNL concentrations compared with patients with bacteremia or healthy volunteers. In both cohorts, a higher circulating METRNL concentration was associated with poor survival. Therefore, our study provides mechanistic and translational insights into how METRNL orchestrates macrophage-dependent antifungal immunity, implying that a potential theranostic approach involving blood-circulating METRNL-guided patient stratification and targeted therapy of blocking METRNL may help improve the management of human fungal disease through a precision medicine strategy.
Insights
Meteorin-like (METRNL) promotes invasive fungal infections by suppressing macrophage immunity. Blocking METRNL protects against lethal Candida albicans and may offer a new precision medicine strategy for candidemia.
Area of Science:
- Immunology
- Infectious Diseases
- Molecular Biology
Background:
- Invasive candidiasis presents a significant challenge in healthcare settings, demanding novel therapeutic strategies.
- The role of the cytokine meteorin-like (METRNL) in fungal infections is not well understood.
Purpose of the Study:
- To investigate the function of METRNL in invasive *Candida albicans* infection.
- To explore the METRNL-KIT signaling pathway in regulating host antifungal immunity.
- To assess the clinical relevance of METRNL as a biomarker for candidemia.
Main Methods:
- Utilized a mouse model of systemic *Candida albicans* infection.
- Employed METRNL knockout mice and METRNL blocking antibodies for therapeutic intervention.
- Investigated the METRNL-KIT axis in macrophages, including dectin-1 expression and phagocytosis assays.
- Analyzed METRNL levels in patient cohorts with candidemia and bacteremia.
Main Results:
- METRNL deficiency rendered mice resistant to lethal *C. albicans* infection.
- METRNL blockade conferred protection, while METRNL administration exacerbated disease.
- The METRNL-KIT axis impaired macrophage antifungal activity via STAT3 signaling.
- Elevated circulating METRNL levels in candidemia patients correlated with poor survival.
Conclusions:
- METRNL acts as a detrimental immune checkpoint in invasive fungal infections.
- The METRNL-KIT-STAT3 pathway is a key regulator of macrophage-mediated antifungal immunity.
- Circulating METRNL is a potential theranostic biomarker for guiding antifungal therapy in candidemia.
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