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Th17 Inflammation Model of Oropharyngeal Candidiasis in Immunodeficient Mice
Published on: February 18, 2015
Rhesus Theta Defensin 1 Promotes Long Term Survival in Systemic Candidiasis by Host Directed Mechanisms
Virginia Basso1, Dat Q Tran1,2, Justin B Schaal1
1Department of Pathology and Laboratory Medicine, Keck School of Medicine, University of Southern California, Los Angeles, California, United States of America.
Abstract:
Invasive candidiasis is an increasingly frequent cause of serious and often fatal infections in hospitalized and immunosuppressed patients. Mortality rates associated with these infections have risen sharply due to the emergence of multidrug resistant (MDR) strains of C. albicans and other Candida spp., highlighting the urgent need of new antifungal therapies. Rhesus theta (θ) defensin-1 (RTD-1), a natural macrocyclic antimicrobial peptide, was recently shown to be rapidly fungicidal against clinical isolates of MDR C. albicans in vitro. Here we found that RTD-1 was rapidly fungicidal against blastospores of fluconazole/caspofungin resistant C. albicans strains, and was active against established C. albicans biofilms in vitro. In vivo, systemic administration of RTD-1, initiated at the time of infection or 24 h post-infection, promoted long term survival in candidemic mice whether infected with drug-sensitive or MDR strains of C. albicans. RTD-1 induced an early (4 h post treatment) increase in neutrophils in naive and infected mice. In vivo efficacy was associated with fungal clearance, restoration of dysregulated inflammatory cytokines including TNF-α, IL-1β, IL-6, IL-10, and IL-17, and homeostatic reduction in numbers of circulating neutrophils and monocytes. Because these effects occurred using peptide doses that produced maximal plasma concentrations (Cmax) of less than 1% of RTD-1 levels required for in vitro antifungal activity in 50% mouse serum, while inducing a transient neutrophilia, we suggest that RTD-1 mediates its antifungal effects in vivo by host directed mechanisms rather than direct fungicidal activity. Results of this study suggest that θ-defensins represent a new class of host-directed compounds for treatment of disseminated candidiasis.
Insights
Rhesus theta defensin-1 (RTD-1) shows promise against drug-resistant invasive candidiasis. This antimicrobial peptide promotes survival in mice by activating host immune responses, not direct fungal killing.
Area of Science:
- Microbiology
- Immunology
- Pharmacology
Background:
- Invasive candidiasis is a life-threatening infection, often fatal in hospitalized and immunocompromised patients.
- Emergence of multidrug-resistant (MDR) Candida strains necessitates novel antifungal therapies.
- Rhesus theta defensin-1 (RTD-1) is a natural antimicrobial peptide with demonstrated in vitro fungicidal activity.
Purpose of the Study:
- To evaluate the efficacy of RTD-1 against drug-resistant Candida albicans in vitro and in vivo.
- To elucidate the mechanisms underlying RTD-1's antifungal effects.
Main Methods:
- Assessed RTD-1 activity against fluconazole/caspofungin-resistant C. albicans blastospores and biofilms in vitro.
- Administered RTD-1 systemically to candidemic mice infected with drug-sensitive or MDR strains.
- Monitored survival rates, fungal burden, inflammatory cytokine profiles, and immune cell populations.
Main Results:
- RTD-1 exhibited rapid fungicidal activity against resistant C. albicans strains and biofilms in vitro.
- Systemic RTD-1 administration improved long-term survival in infected mice, irrespective of fungal strain drug sensitivity.
- In vivo efficacy correlated with fungal clearance, cytokine restoration, and modulation of neutrophil and monocyte levels.
- RTD-1's in vivo effects occurred at sub-inhibitory concentrations, suggesting host-directed mechanisms.
Conclusions:
- RTD-1 demonstrates significant therapeutic potential for invasive candidiasis, including MDR strains.
- RTD-1 appears to exert its antifungal effects primarily through host-directed immune modulation rather than direct fungicidal action.
- Theta-defensins represent a novel class of host-directed compounds for treating disseminated candidiasis.

