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Published on: May 5, 2014
Alexidine Dihydrochloride Has Broad-Spectrum Activities against Diverse Fungal Pathogens
Zeinab Mamouei1, Abdullah Alqarihi1, Shakti Singh1
1Los Angeles Biomedical Research Institute at Harbor-University of California at Los Angeles (UCLA) Medical Center, Torrance, California, USA.
Abstract:
Invasive fungal infections due to Candida albicans, Aspergillus fumigatus, and Cryptococcus neoformans constitute a substantial threat to hospitalized immunocompromised patients. Further, the presence of drug-recalcitrant biofilms on medical devices and emergence of drug-resistant fungi, such as Candida auris, introduce treatment challenges with current antifungal drugs. Worse, currently there is no approved drug capable of obviating preformed biofilms, which increase the chance of infection relapses. Here, we screened a small-molecule New Prestwick Chemical Library, consisting of 1,200 FDA-approved off-patent drugs against C. albicans, C. auris, and A. fumigatus, to identify those that inhibit growth of all three pathogens. Inhibitors were further prioritized for their potency against other fungal pathogens and their ability to kill preformed biofilms. Our studies identified the bis-biguanide alexidine dihydrochloride (AXD) as a drug with the highest antifungal and antibiofilm activity against a diverse range of fungal pathogens. Finally, AXD significantly potentiated the efficacy of fluconazole against biofilms, displayed low mammalian cell toxicity, and eradicated biofilms growing in mouse central venous catheters in vivo, highlighting its potential as a pan-antifungal drug.IMPORTANCE The prevalence of fungal infections has seen a rise in the past decades due to advances in modern medicine leading to an expanding population of device-associated and immunocompromised patients. Furthermore, the spectrum of pathogenic fungi has changed, with the emergence of multidrug-resistant strains such as C. auris High mortality related to fungal infections points to major limitations of current antifungal therapy and an unmet need for new antifungal drugs. We screened a library of repurposed FDA-approved inhibitors to identify compounds with activities against a diverse range of fungi in varied phases of growth. The assays identified alexidine dihydrochloride (AXD) to have pronounced antifungal activity, including against preformed biofilms, at concentrations lower than mammalian cell toxicity. AXD potentiated the activity of fluconazole and amphotericin B against Candida biofilms in vitro and prevented biofilm growth in vivo Thus, AXD has the potential to be developed as a pan-antifungal, antibiofilm drug.
Insights
A new drug, alexidine dihydrochloride (AXD), shows strong antifungal and antibiofilm activity against dangerous fungi like Candida auris. AXD also works with existing drugs and is safe for mammals, offering hope for treating resistant fungal infections.
Area of Science:
- Mycology
- Infectious Diseases
- Drug Discovery
Background:
- Invasive fungal infections pose significant risks to immunocompromised patients.
- Drug-resistant fungi and biofilms present major challenges for current antifungal therapies.
- There is an urgent need for novel antifungal agents, especially those effective against preformed biofilms.
Purpose of the Study:
- To screen FDA-approved drugs for antifungal and antibiofilm activity against key pathogens.
- To identify a drug effective against multiple fungal species, including resistant strains and biofilms.
- To evaluate the potential of identified compounds as pan-antifungal agents.
Main Methods:
- Screened a library of 1,200 FDA-approved drugs against Candida albicans, Candida auris, and Aspergillus fumigatus.
- Prioritized inhibitors based on potency against diverse fungal pathogens and antibiofilm efficacy.
- Assessed alexidine dihydrochloride (AXD) for antifungal, antibiofilm, and in vivo efficacy in a mouse model.
Main Results:
- Identified alexidine dihydrochloride (AXD) as a potent inhibitor of fungal growth and preformed biofilms.
- AXD demonstrated broad-spectrum activity against various fungal pathogens.
- AXD potentiated existing antifungal drugs, showed low mammalian toxicity, and eradicated biofilms in vivo.
Conclusions:
- Alexidine dihydrochloride (AXD) exhibits significant pan-antifungal and antibiofilm potential.
- AXD represents a promising candidate for developing new treatments against challenging fungal infections.
- Repurposed drugs offer a viable strategy for addressing the unmet need for novel antifungal therapies.
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