Antifungal efficacy of isavuconazole and liposomal amphotericin B in a rabbit model of Exserohilum rostratum meningoencephalitis: A preclinical paradigm for management of CNS phaeohyphomycosis

Author:

Petraitis Vidmantas1,Petraitiene Ruta1,Katragkou Aspasia12,Maung Bo Bo Win1,Moradi Patriss W1,Sussman-Straus Gittel E1,Naing Ethan1,Kovanda Laura L3,Finkelman Malcolm A4,Walsh Thomas J156

Affiliation:

1. Transplantation-Oncology Infectious Diseases Program, Division of Infectious Diseases, Department of Medicine, Weill Cornell Medicine of Cornell University, New York, New York, USA

2. New York Presbyterian Brooklyn Methodist Hospital, Brooklyn, New York, USA

3. Astellas Pharma Global Development, Inc., Northbrook, Illinois, USA

4. Associates of Cape Cod, Inc., East Falmouth, Massachusetts, USA

5. Department of Microbiology & Immunology, Weill Cornell Medicine of Cornell University, New York, New York, USA

6. Department of Pediatrics, Weill Cornell Medicine of Cornell University, New York, New York, USA

Abstract

Abstract Treatment options for Exserohilum rostratum meningoencephalitis and other causes of phaeohyphomycosis of the central nervous system (CNS) are limited, while mortality and morbidity remain high. We therefore evaluated isavuconazole, a new antifungal triazole in comparison to liposomal amphotericin B (LAMB), in vitro and in the rabbit model of Exserohilum rostratum meningoencephalitis. We hypothesized that isavuconazole alone or in combination with LAMB or micafungin may be alternative options for treatment of CNS phaeohyphomycosis. We therefore investigated the in vitro antifungal activity of isavuconazole alone or in combination with amphotericin B deoxycholate (DAMB) or micafungin and efficacy of treatment with isavuconazole and LAMB in a rabbit model of experimental E. rostratum meningoencephalitis. Combination checkerboard plates were used to determine the minimum inhibitory concentrations, minimal lethal concentrations, fractional inhibitory concentration indices, and Bliss surface analysis of isavuconazole and amphotericin B deoxycholate (DAMB), either alone or in combination. As there were no in vitro synergistic or antagonistic interactions for either combination of antifungal agents against the E. rostratum isolates, in vivo studies were conducted with isavuconazole and LAMB as monotherapies. Rabbits were divided in following groups: treated with isavuconazole at 60 mg/kg/d (ISAV60), LAMB at 5.0 (LAMB5), 7.5 (LAMB7.5), and 10 mg/kg/d (LAMB10), and untreated controls (UC). In ISAV60-, LAMB5-, LAMB7.5-, and LAMB10-treated rabbits, significant reductions of fungal burden of E. rostratum in cerebral, cerebellar, and spinal cord tissues (P < 0.01) were demonstrated in comparison to those of UC. These antifungal effects correlated with significant reduction of CSF (1→3)-β-D-glucan levels vs UC (P < 0.05). These data establish new translational insights into treatment of CNS phaeohyphomycosis.

Funder

Astellas Pharma Global Development

Astellas Pharma

Publisher

Oxford University Press (OUP)

Subject

Infectious Diseases,General Medicine

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