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Published on: September 16, 2022
Candida Cell-Surface-Specific Monoclonal Antibodies Protect Mice against Candida auris Invasive Infection
Jonothan Rosario-Colon1, Karen Eberle1, Abby Adams1
1Department of Microbiology, Immunology, and Parasitology, Louisiana State University-Health Sciences Center, New Orleans, LA 70112, USA.
Abstract:
Candida auris is a multidrug-resistant fungal pathogen that can cause disseminated bloodstream infections with up to 60% mortality in susceptible populations. Of the three major classes of antifungal drugs, most C. auris isolates show high resistance to azoles and polyenes, with some clinical isolates showing resistance to all three drug classes. We reported in this study a novel approach to treating C. auris disseminated infections through passive transfer of monoclonal antibodies (mAbs) targeting cell surface antigens with high homology in medically important Candida species. Using an established A/J mouse model of disseminated infection that mimics human candidiasis, we showed that C3.1, a mAb that targets β-1,2-mannotriose (β-Man3), significantly extended survival and reduced fungal burdens in target organs, compared to control mice. We also demonstrated that two peptide-specific mAbs, 6H1 and 9F2, which target hyphal wall protein 1 (Hwp1) and phosphoglycerate kinase 1 (Pgk1), respectively, also provided significantly enhanced survival and reduction of fungal burdens. Finally, we showed that passive transfer of a 6H1+9F2 cocktail induced significantly enhanced protection, compared to treatment with either mAb individually. Our data demonstrate the utility of β-Man3- and peptide-specific mAbs as an effective alternative to antifungals against medically important Candida species including multidrug-resistant C. auris.
Insights
Monoclonal antibodies targeting Candida auris cell surface antigens offer a promising new treatment. These antibodies, including those against β-1,2-mannotriose and specific peptides, significantly improved survival and reduced fungal burden in a mouse model.
Area of Science:
- Mycology
- Immunology
- Infectious Diseases
Background:
- * *Candida auris* is a multidrug-resistant fungus causing life-threatening infections.
- * Existing antifungal drugs are often ineffective due to high resistance rates.
- * New therapeutic strategies are urgently needed to combat *C. auris*.
Purpose of the Study:
- * To investigate the efficacy of monoclonal antibodies (mAbs) targeting *C. auris* cell surface antigens.
- * To evaluate mAbs as a novel passive immunotherapy against disseminated candidiasis.
Main Methods:
- * Utilized an A/J mouse model of disseminated *C. auris* infection.
- * Administered mAbs targeting β-1,2-mannotriose (C3.1), hyphal wall protein 1 (6H1), and phosphoglycerate kinase 1 (9F2).
- * Assessed survival rates and fungal burdens in target organs.
Main Results:
- * mAb C3.1 targeting β-1,2-mannotriose significantly improved survival and reduced fungal burden.
- * Peptide-specific mAbs 6H1 (targeting Hwp1) and 9F2 (targeting Pgk1) also enhanced survival and reduced fungal burdens.
- * A combination of mAbs 6H1 and 9F2 provided superior protection compared to individual mAbs.
Conclusions:
- * Monoclonal antibodies targeting specific *C. auris* antigens are effective in a preclinical model.
- * This mAb-based immunotherapy shows potential as an alternative treatment for multidrug-resistant *C. auris* infections.
- * Combination therapy with multiple mAbs may offer enhanced therapeutic benefits.

