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Published on: November 6, 2020
An Immunomodulatory Peptide Confers Protection in an Experimental Candidemia Murine Model
Camila G Freitas1,2,3,4, Stella M F Lima1,3,4,5, Mirna S Freire1,6,7
1Centro de Análises Proteômicas e Bioquímicas, Brasília, Distrito Federal, Brazil.
Abstract:
Fungal Candida species are commensals present in the mammalian skin and mucous membranes. Candida spp. are capable of breaching the epithelial barrier of immunocompromised patients with neutrophil and cell-mediated immune dysfunctions and can also disseminate to multiple organs through the bloodstream. Here we examined the action of innate defense regulator 1018 (IDR-1018), a 12-amino-acid-residue peptide derived from bovine bactenecin (Bac2A): IDR-1018 showed weak antifungal and antibiofilm activity against a Candida albicans laboratory strain (ATCC 10231) and a clinical isolate (CI) (MICs of 32 and 64 μg · ml-1, respectively), while 8-fold lower concentrations led to dissolution of the fungal cells from preformed biofilms. IDR-1018 at 128 μg · ml-1 was not hemolytic when tested against murine red blood cells and also has not shown a cytotoxic effect on murine monocyte RAW 264.7 and primary murine macrophage cells at the tested concentrations. IDR-1018 modulated the cytokine profile during challenge of murine bone marrow-derived macrophages with heat-killed C. albicans (HKCA) antigens by increasing monocyte chemoattractant protein 1 (MCP-1) and interleukin-10 (IL-10) levels, while suppressing tumor necrosis factor alpha (TNF-α), IL-1β, IL-6, and IL-12 levels. Mice treated with IDR-1018 at 10 mg · kg-1 of body weight had an increased survival rate in the candidemia model compared with phosphate-buffered saline (PBS)-treated mice, together with a diminished kidney fungal burden. Thus, IDR-1018 was able to protect against murine experimental candidemia and has the potential as an adjunctive therapy.
Insights
Innate defense regulator 1018 (IDR-1018) peptide shows potential against Candida infections. It effectively reduced fungal burden and improved survival in a mouse model of candidemia.
Area of Science:
- Microbiology
- Immunology
- Pharmacology
Background:
- * Fungal *Candida* species are common commensals but can cause severe infections in immunocompromised individuals.
- * *Candida* bloodstream infections (candidemia) are a significant cause of morbidity and mortality.
- * Novel therapeutic strategies are needed to combat invasive candidiasis.
Purpose of the Study:
- * To evaluate the antifungal and immunomodulatory effects of innate defense regulator 1018 (IDR-1018).
- * To assess the efficacy of IDR-1018 in a murine model of candidemia.
Main Methods:
- * Antifungal and antibiofilm activity of IDR-1018 against *Candida albicans* was determined.
- * Hemolytic and cytotoxic effects of IDR-1018 were assessed.
- * Cytokine profiles were analyzed in macrophages stimulated with *C. albicans* antigens and treated with IDR-1018.
- * Efficacy was evaluated in a murine model of candidemia.
Main Results:
- * IDR-1018 demonstrated weak direct antifungal activity but effectively dissolved preformed *Candida* biofilms.
- * IDR-1018 was non-hemolytic and non-cytotoxic to murine immune cells.
- * IDR-1018 modulated cytokine production, increasing MCP-1 and IL-10 while suppressing TNF-α, IL-1β, IL-6, and IL-12.
- * IDR-1018 treatment significantly increased survival rates and reduced kidney fungal burden in mice with candidemia.
Conclusions:
- * IDR-1018 exhibits promising therapeutic potential against invasive candidiasis.
- * Its immunomodulatory properties contribute to its protective effects.
- * IDR-1018 may serve as an effective adjunctive therapy for candidemia.

