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Screening the pandemic response box identified benzimidazole carbamates, Olorofim and ravuconazole as promising drug candidates for the treatment of eumycetoma

Eumycetoma is a chronic subcutaneous neglected tropical disease that can be caused by more than 40 different fungal causative agents. The most common causative agents produce black grains and belong to the fungal orders Sordariales and Pleosporales. The current antifungal agents used to treat eumyce...

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Autores principales: Lim, Wilson, Nyuykonge, Bertrand, Eadie, Kimberly, Konings, Mickey, Smeets, Juli, Fahal, Ahmed, Bonifaz, Alexandro, Todd, Matthew, Perry, Benjamin, Samby, Kirandeep, Burrows, Jeremy, Verbon, Annelies, van de Sande, Wendy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8815882/
https://www.ncbi.nlm.nih.gov/pubmed/35120131
http://dx.doi.org/10.1371/journal.pntd.0010159
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author Lim, Wilson
Nyuykonge, Bertrand
Eadie, Kimberly
Konings, Mickey
Smeets, Juli
Fahal, Ahmed
Bonifaz, Alexandro
Todd, Matthew
Perry, Benjamin
Samby, Kirandeep
Burrows, Jeremy
Verbon, Annelies
van de Sande, Wendy
author_facet Lim, Wilson
Nyuykonge, Bertrand
Eadie, Kimberly
Konings, Mickey
Smeets, Juli
Fahal, Ahmed
Bonifaz, Alexandro
Todd, Matthew
Perry, Benjamin
Samby, Kirandeep
Burrows, Jeremy
Verbon, Annelies
van de Sande, Wendy
author_sort Lim, Wilson
collection PubMed
description Eumycetoma is a chronic subcutaneous neglected tropical disease that can be caused by more than 40 different fungal causative agents. The most common causative agents produce black grains and belong to the fungal orders Sordariales and Pleosporales. The current antifungal agents used to treat eumycetoma are itraconazole or terbinafine, however, their cure rates are low. To find novel drugs for eumycetoma, we screened 400 diverse drug-like molecules from the Pandemic Response Box against common eumycetoma causative agents as part of the Open Source Mycetoma initiative (MycetOS). 26 compounds were able to inhibit the growth of Madurella mycetomatis, Madurella pseudomycetomatis and Madurella tropicana, 26 compounds inhibited Falciformispora senegalensis and seven inhibited growth of Medicopsis romeroi in vitro. Four compounds were able to inhibit the growth of all five species of fungi tested. They are the benzimidazole carbamates fenbendazole and carbendazim, the 8-aminoquinolone derivative tafenoquine and MMV1578570. Minimal inhibitory concentrations were then determined for the compounds active against M. mycetomatis. Compounds showing potent activity in vitro were further tested in vivo. Fenbendazole, MMV1782387, ravuconazole and olorofim were able to significantly prolong Galleria mellonella larvae survival and are promising candidates to explore in mycetoma treatment and to also serve as scaffolds for medicinal chemistry optimisation in the search for novel antifungals to treat eumycetoma.
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spelling pubmed-88158822022-02-05 Screening the pandemic response box identified benzimidazole carbamates, Olorofim and ravuconazole as promising drug candidates for the treatment of eumycetoma Lim, Wilson Nyuykonge, Bertrand Eadie, Kimberly Konings, Mickey Smeets, Juli Fahal, Ahmed Bonifaz, Alexandro Todd, Matthew Perry, Benjamin Samby, Kirandeep Burrows, Jeremy Verbon, Annelies van de Sande, Wendy PLoS Negl Trop Dis Research Article Eumycetoma is a chronic subcutaneous neglected tropical disease that can be caused by more than 40 different fungal causative agents. The most common causative agents produce black grains and belong to the fungal orders Sordariales and Pleosporales. The current antifungal agents used to treat eumycetoma are itraconazole or terbinafine, however, their cure rates are low. To find novel drugs for eumycetoma, we screened 400 diverse drug-like molecules from the Pandemic Response Box against common eumycetoma causative agents as part of the Open Source Mycetoma initiative (MycetOS). 26 compounds were able to inhibit the growth of Madurella mycetomatis, Madurella pseudomycetomatis and Madurella tropicana, 26 compounds inhibited Falciformispora senegalensis and seven inhibited growth of Medicopsis romeroi in vitro. Four compounds were able to inhibit the growth of all five species of fungi tested. They are the benzimidazole carbamates fenbendazole and carbendazim, the 8-aminoquinolone derivative tafenoquine and MMV1578570. Minimal inhibitory concentrations were then determined for the compounds active against M. mycetomatis. Compounds showing potent activity in vitro were further tested in vivo. Fenbendazole, MMV1782387, ravuconazole and olorofim were able to significantly prolong Galleria mellonella larvae survival and are promising candidates to explore in mycetoma treatment and to also serve as scaffolds for medicinal chemistry optimisation in the search for novel antifungals to treat eumycetoma. Public Library of Science 2022-02-04 /pmc/articles/PMC8815882/ /pubmed/35120131 http://dx.doi.org/10.1371/journal.pntd.0010159 Text en © 2022 Lim et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Lim, Wilson
Nyuykonge, Bertrand
Eadie, Kimberly
Konings, Mickey
Smeets, Juli
Fahal, Ahmed
Bonifaz, Alexandro
Todd, Matthew
Perry, Benjamin
Samby, Kirandeep
Burrows, Jeremy
Verbon, Annelies
van de Sande, Wendy
Screening the pandemic response box identified benzimidazole carbamates, Olorofim and ravuconazole as promising drug candidates for the treatment of eumycetoma
title Screening the pandemic response box identified benzimidazole carbamates, Olorofim and ravuconazole as promising drug candidates for the treatment of eumycetoma
title_full Screening the pandemic response box identified benzimidazole carbamates, Olorofim and ravuconazole as promising drug candidates for the treatment of eumycetoma
title_fullStr Screening the pandemic response box identified benzimidazole carbamates, Olorofim and ravuconazole as promising drug candidates for the treatment of eumycetoma
title_full_unstemmed Screening the pandemic response box identified benzimidazole carbamates, Olorofim and ravuconazole as promising drug candidates for the treatment of eumycetoma
title_short Screening the pandemic response box identified benzimidazole carbamates, Olorofim and ravuconazole as promising drug candidates for the treatment of eumycetoma
title_sort screening the pandemic response box identified benzimidazole carbamates, olorofim and ravuconazole as promising drug candidates for the treatment of eumycetoma
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8815882/
https://www.ncbi.nlm.nih.gov/pubmed/35120131
http://dx.doi.org/10.1371/journal.pntd.0010159
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