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The Orotomide Olorofim Is Efficacious in an Experimental Model of Central Nervous System Coccidioidomycosis
Nathan P Wiederhold1, Laura K Najvar2,3, Rosie Jaramillo2,3
1University of Texas Health Science Center at San Antonio, San Antonio, Texas, USA wiederholdn@uthscsa.edu.
Abstract:
Olorofim (formerly F901318) is an advanced analog of the orotomide class that inhibits fungal pyrimidine biosynthesis. We evaluated the in vitro and in vivo activities of olorofim against Coccidioides species. In vitro activity was assessed against 59 clinical Coccidioides isolates. Central nervous system infections were established in mice via intracranial inoculation with Coccidioides immitis arthroconidia. Oral therapy began 48 h postinoculation and consisted of vehicle control, olorofim daily doses of 20 mg/kg (6.67 mg/kg three times daily or 10 mg/kg twice daily) or 40 mg/kg (13.3 mg/kg three times daily or 20 mg/kg twice daily), or fluconazole (25 mg/kg twice daily). Treatment continued for 7 and 14 days in the fungal burden and survival arms, respectively. Fungal burdens were assessed by CFU counts in brains. Olorofim demonstrated potent in vitro activity (MIC range, ≤0.008 to 0.06 μg/ml). Survival was significantly enhanced in mice treated with olorofim. Reductions in brain tissue fungal burdens were also observed on day 9 in the olorofim-treated groups. Improvements in survival and reductions in fungal burdens also occurred with fluconazole. More frequent dosing of olorofim was associated with enhanced survival and greater reductions in fungal burdens. In the group treated with 13.3 mg/kg olorofim three times daily, fungal burdens remained low on day 30 (15 days after treatment was stopped), with undetectable levels in 7 of 10 mice. In contrast, fungal burdens rebounded in all other groups after therapy stopped. Olorofim was highly active in vitro and in vivo against Coccidioides These results demonstrate that olorofim may have a role in the treatment of coccidioidomycosis.
Insights
Olorofim shows potent activity against Coccidioides, enhancing survival and reducing fungal burden in a mouse model of coccidioidomycosis. Frequent dosing of olorofim led to sustained fungal clearance, suggesting its potential for treating this fungal infection.
Area of Science:
- Mycology
- Infectious Diseases
- Pharmacology
Background:
- Coccidioidomycosis is a serious fungal infection, often difficult to treat.
- Existing treatments have limitations, necessitating the development of new antifungal agents.
- Olorofim is an orotomide analog targeting fungal pyrimidine biosynthesis.
Purpose of the Study:
- To evaluate the in vitro and in vivo efficacy of olorofim against Coccidioides species.
- To assess the impact of different dosing regimens on treatment outcomes.
- To compare olorofim's activity with fluconazole in a preclinical model.
Main Methods:
- In vitro susceptibility testing against 59 clinical Coccidioides isolates.
- Murine model of central nervous system coccidioidomycosis established via intracranial inoculation.
- Oral administration of vehicle control, varying doses of olorofim, or fluconazole; assessment of survival and fungal burden (CFU counts).
Main Results:
- Olorofim exhibited potent in vitro activity (MIC range, ≤0.008 to 0.06 μg/ml).
- Olorofim significantly improved survival and reduced fungal burdens in the brain.
- More frequent olorofim dosing correlated with enhanced survival and sustained fungal clearance, with undetectable levels in 70% of mice 15 days post-treatment.
Conclusions:
- Olorofim demonstrates significant in vitro and in vivo activity against Coccidioides.
- The efficacy of olorofim is dose- and frequency-dependent.
- Olorofim shows promise as a potential therapeutic agent for coccidioidomycosis.
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