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Pharmacodynamics of ATI-2307 in a rabbit model of cryptococcal meningoencephalitis
Charles D Giamberardino1, Jennifer L Tenor1, Dena L Toffaletti1
1Department of Medicine, Division of Infectious Diseases, Duke University , Durham, North Carolina, USA.
Abstract:
Cryptococcal meningoencephalitis (CM) is a devastating fungal disease with high morbidity and mortality. The current regimen that is standard-of-care involves a combination of three different drugs administered for up to one year. There is a critical need for new therapies due to both toxicity and inadequate fungicidal activity of the currently available antifungal drugs. ATI-2307 is a novel aryl amidine that disrupts the mitochondrial membrane potential and inhibits the respiratory chain complexes of fungi-it thus represents a new mechanism for direct antifungal action. Furthermore, ATI-2307 selectively targets fungal mitochondria via a fungal-specific transporter that is not present in mammalian cells. It has very potent in vitro anticryptococcal activity. In this study, the efficacy of ATI-2307 was tested in a rabbit model of CM. ATI-2307 demonstrated significant fungicidal activity at dosages between 1 and 2 mg/kg/d, and these results were superior to fluconazole and similar to amphotericin B treatment. When ATI-2307 was combined with fluconazole, the antifungal effect was greater than either therapy alone. While ATI-2307 has potent anticryptococcal activity in the subarachnoid space, its ability to reduce yeasts in the brain parenchyma was relatively less over the same study period. This new drug, with its unique mechanism of fungicidal action and ability to positively interact with an azole, has demonstrated sufficient anticryptococcal potential in this experimental setting to be further evaluated in clinical studies.
Insights
A new antifungal drug, ATI-2307, shows potent activity against cryptococcal meningoencephalitis (CM) in rabbit models. Combining ATI-2307 with fluconazole enhances its efficacy, suggesting promise for future clinical studies.
Area of Science:
- Mycology
- Infectious Diseases
- Pharmacology
Background:
- Cryptococcal meningoencephalitis (CM) presents significant morbidity and mortality.
- Current standard-of-care treatments for CM are lengthy and possess limitations in efficacy and toxicity.
- Novel antifungal agents with improved mechanisms are critically needed.
Purpose of the Study:
- To evaluate the efficacy of ATI-2307, a novel aryl amidine, in a rabbit model of cryptococcal meningoencephalitis.
- To assess the anticryptococcal activity and potential synergistic effects of ATI-2307.
Main Methods:
- A rabbit model of CM was utilized to test the efficacy of ATI-2307.
- Dosages of ATI-2307 were administered, and its fungicidal activity was compared to fluconazole and amphotericin B.
- Combination therapy with ATI-2307 and fluconazole was also investigated.
Main Results:
- ATI-2307 demonstrated significant fungicidal activity at 1-2 mg/kg/d, outperforming fluconazole and matching amphotericin B.
- Combination therapy of ATI-2307 and fluconazole yielded greater antifungal effects than monotherapy.
- ATI-2307 showed potent activity in the subarachnoid space but less reduction of yeasts in the brain parenchyma within the study period.
Conclusions:
- ATI-2307 exhibits potent anticryptococcal activity and a novel mechanism of action targeting fungal mitochondria.
- The drug shows promise as a potential new therapy for CM, especially in combination with azoles.
- Further clinical evaluation of ATI-2307 is warranted based on these experimental findings.
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