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Broth Microdilution In Vitro Screening: An Easy and Fast Method to Detect New Antifungal Compounds
Published on: February 14, 2018
Antifungal activity of the repurposed drug disulfiram against Cryptococcus neoformans
Min Peng1, Chen Zhang1, Yuan-Yuan Duan2
1Department of Dermatology, Affiliated Jinling Hospital, Medical School of Nanjing University, Nanjing, China.
Abstract:
Fungal infections have become clinically challenging owing to the emergence of drug resistance in invasive fungi and the rapid increase in the number of novel pathogens. The development of drug resistance further restricts the use of antifungal agents. Therefore, there is an urgent need to identify alternative treatments for Cryptococcus neoformans (C. neoformans). Disulfiram (DSF) has a good human safety profile and promising applications as an antiviral, antifungal, antiparasitic, and anticancer agent. However, the effect of DSF on Cryptococcus is yet to be thoroughly investigated. This study investigated the antifungal effects and the mechanism of action of DSF against C. neoformans to provide a new theoretical foundation for the treatment of Cryptococcal infections. In vitro studies demonstrated that DSF inhibited Cryptococcus growth at minimum inhibitory concentrations (MICs) ranging from 1.0 to 8.0 μg/mL. Combined antifungal effects have been observed for DSF with 5-fluorocytosine, amphotericin B, terbinafine, or ketoconazole. DSF exerts significant protective effects and synergistic effects combined with 5-FU for Galleria mellonella infected with C. neoformans. Mechanistic investigations showed that DSF dose-dependently inhibited melanin, urease, acetaldehyde dehydrogenase, capsule and biofilm viability of C. neoformans. Further studies indicated that DSF affected C. neoformans by interfering with multiple biological pathways, including replication, metabolism, membrane transport, and biological enzyme activity. Potentially essential targets of these pathways include acetaldehyde dehydrogenase, catalase, ATP-binding cassette transporter (ABC transporter), and iron-sulfur cluster transporter. These findings provide novel insights into the application of DSF and contribute to the understanding of its mechanisms of action in C. neoformans.
Insights
Disulfiram (DSF) shows antifungal activity against Cryptococcus neoformans, inhibiting key virulence factors and offering a potential new treatment for fungal infections. This study explores DSF
Area of Science:
- Mycology
- Infectious Diseases
- Pharmacology
Background:
- Fungal infections pose significant challenges due to emerging drug resistance and novel pathogens.
- Existing antifungal agents have limitations, necessitating the search for alternative treatments.
- Disulfiram (DSF) is a known drug with a good safety profile and potential therapeutic applications.
Purpose of the Study:
- To investigate the antifungal effects of Disulfiram (DSF) against Cryptococcus neoformans (C. neoformans).
- To elucidate the mechanism of action of DSF against C. neoformans.
- To provide a theoretical basis for developing new treatments for cryptococcal infections.
Main Methods:
- In vitro susceptibility testing to determine minimum inhibitory concentrations (MICs) of DSF against C. neoformans.
- In vivo studies using Galleria mellonella models to assess DSF's protective and synergistic effects.
- Mechanistic studies to evaluate DSF's impact on C. neoformans virulence factors like melanin, urease, capsule, and biofilm.
Main Results:
- DSF inhibited C. neoformans growth with MICs ranging from 1.0 to 8.0 μg/mL.
- DSF demonstrated synergistic antifungal effects when combined with 5-fluorocytosine (5-FU) in vitro and in vivo.
- DSF dose-dependently inhibited melanin, urease, capsule, and biofilm viability, interfering with replication, metabolism, and enzyme activity.
Conclusions:
- Disulfiram (DSF) exhibits significant antifungal activity against Cryptococcus neoformans.
- DSF targets multiple essential pathways and virulence factors in C. neoformans.
- DSF represents a promising candidate for novel therapeutic strategies against cryptococcal infections.

