Combating Black Fungus: Using Allicin as a Potent Antifungal Agent against Mucorales

Author:

Schier Christina12ORCID,Gruhlke Martin C. H.34ORCID,Reucher Georg2,Slusarenko Alan J.13ORCID,Rink Lothar2ORCID

Affiliation:

1. Department of Plant Physiology, RWTH Aachen University, Worringer Weg 1, 52074 Aachen, Germany

2. Institute of Immunology, RWTH Aachen University Hospital, Pauwelsstraße 30, 52074 Aachen, Germany

3. GENAWIF e.V.—Society for Natural Compound and Active Ingredient Research, Lukasstraße 1, 52070 Aachen, Germany

4. Institute of Applied Microbiology—iAMB, Aachener Biology and Biotechnology—ABBt, RWTH Aachen University, 52074 Aachen, Germany

Abstract

Invasive fungal (IF) diseases are a leading global cause of mortality, particularly among immunocompromised individuals. The SARS-CoV-2 pandemic further exacerbated this scenario, intensifying comorbid IF infections such as mucormycoses of the nasopharynx. In the work reported here, it is shown that zygomycetes, significant contributors to mycoses, are sensitive to the natural product allicin. Inhibition of Mucorales fungi by allicin in solution and by allicin vapor was demonstrated. Mathematical modeling showed that the efficacy of allicin vapor is comparable to direct contact with the commercially available antifungal agent amphotericin B (ampB). Furthermore, the study revealed a synergistic interaction between allicin and the non-volatile ampB. The toxicity of allicin solution to human cell lines was evaluated and it was found that the half maximal effective concentration (EC50) of allicin was 25–72 times higher in the cell lines as compared to the fungal spores. Fungal allicin sensitivity depends on the spore concentration, as demonstrated in a drop test. This study shows the potential of allicin, a sulfur-containing defense compound from garlic, to combat zygomycete fungi. The findings underscore allicin’s promise for applications in infections of the nasopharynx via inhalation, suggesting a novel therapeutic avenue against challenging fungal infections.

Funder

RWTH Aachen University

Measures for the Promotion of Young Scientists at RWTH Aachen University (RFwN) and the German Research Foundation

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference69 articles.

1. Global Burden of Bacterial Antimicrobial Resistance in 2019: A Systematic Analysis;Murray;Lancet,2022

2. Hidden Killers: Human Fungal Infections;Brown;Sci. Transl. Med.,2012

3. COVID-19-Associated Fungal Infections;Hoenigl;Nat. Microbiol.,2022

4. World Health Organization (2022). WHO Fungal Priority Pathogens List to Guide Research, Development and Public Health Action, WHO.

5. Azole Resistance in Aspergillus Fumigatus: A Growing Public Health Concern;Vermeulen;Curr. Opin. Infect. Dis.,2013

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