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Giving a Hand: Synthetic Peptides Boost the Antifungal Activity of Itraconazole against Cryptococcus neoformans

Cryptococcus neoformans is a multidrug-resistant pathogen responsible for infections in immunocompromised patients. Here, itraconazole (ITR), a commercial antifungal drug with low effectiveness against C. neoformans, was combined with different synthetic antimicrobial peptides (SAMPs), Mo-CBP3-PepII...

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Autores principales: Aguiar, Tawanny K. B., Feitosa, Ricardo M., Neto, Nilton A. S., Malveira, Ellen A., Gomes, Francisco I. R., Costa, Ana C. M., Freitas, Cleverson D. T., Mesquita, Felipe P., Souza, Pedro F. N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9952215/
https://www.ncbi.nlm.nih.gov/pubmed/36830167
http://dx.doi.org/10.3390/antibiotics12020256
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author Aguiar, Tawanny K. B.
Feitosa, Ricardo M.
Neto, Nilton A. S.
Malveira, Ellen A.
Gomes, Francisco I. R.
Costa, Ana C. M.
Freitas, Cleverson D. T.
Mesquita, Felipe P.
Souza, Pedro F. N.
author_facet Aguiar, Tawanny K. B.
Feitosa, Ricardo M.
Neto, Nilton A. S.
Malveira, Ellen A.
Gomes, Francisco I. R.
Costa, Ana C. M.
Freitas, Cleverson D. T.
Mesquita, Felipe P.
Souza, Pedro F. N.
author_sort Aguiar, Tawanny K. B.
collection PubMed
description Cryptococcus neoformans is a multidrug-resistant pathogen responsible for infections in immunocompromised patients. Here, itraconazole (ITR), a commercial antifungal drug with low effectiveness against C. neoformans, was combined with different synthetic antimicrobial peptides (SAMPs), Mo-CBP3-PepII, RcAlb-PepII, RcAlb-PepIII, PepGAT, and PepKAA. The Mo-CBP3-PepII was designed based on the sequence of MoCBP3, purified from Moringa oleifera seeds. RcAlb-PepII and RcAlb-PepIII were designed using Rc-2S-Alb, purified from Ricinus communis seed cakes. The putative sequence of a chitinase from Arabidopsis thaliana was used to design PepGAT and PepKAA. All SAMPs have a positive liquid charge and a hydrophobic potential ranging from 41–65%. The mechanisms of action responsible for the combined effect were evaluated for the best combinations using fluorescence microscopy (FM). The synthetic peptides enhanced the activity of ITR by 10-fold against C. neoformans. Our results demonstrated that the combinations could induce pore formation in the membrane and the overaccumulation of ROS on C. neoformans cells. Our findings indicate that our peptides successfully potentialize the activity of ITR against C. neoformans. Therefore, synthetic peptides are potential molecules to assist antifungal agents in treating Cryptococcal infections.
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spelling pubmed-99522152023-02-25 Giving a Hand: Synthetic Peptides Boost the Antifungal Activity of Itraconazole against Cryptococcus neoformans Aguiar, Tawanny K. B. Feitosa, Ricardo M. Neto, Nilton A. S. Malveira, Ellen A. Gomes, Francisco I. R. Costa, Ana C. M. Freitas, Cleverson D. T. Mesquita, Felipe P. Souza, Pedro F. N. Antibiotics (Basel) Article Cryptococcus neoformans is a multidrug-resistant pathogen responsible for infections in immunocompromised patients. Here, itraconazole (ITR), a commercial antifungal drug with low effectiveness against C. neoformans, was combined with different synthetic antimicrobial peptides (SAMPs), Mo-CBP3-PepII, RcAlb-PepII, RcAlb-PepIII, PepGAT, and PepKAA. The Mo-CBP3-PepII was designed based on the sequence of MoCBP3, purified from Moringa oleifera seeds. RcAlb-PepII and RcAlb-PepIII were designed using Rc-2S-Alb, purified from Ricinus communis seed cakes. The putative sequence of a chitinase from Arabidopsis thaliana was used to design PepGAT and PepKAA. All SAMPs have a positive liquid charge and a hydrophobic potential ranging from 41–65%. The mechanisms of action responsible for the combined effect were evaluated for the best combinations using fluorescence microscopy (FM). The synthetic peptides enhanced the activity of ITR by 10-fold against C. neoformans. Our results demonstrated that the combinations could induce pore formation in the membrane and the overaccumulation of ROS on C. neoformans cells. Our findings indicate that our peptides successfully potentialize the activity of ITR against C. neoformans. Therefore, synthetic peptides are potential molecules to assist antifungal agents in treating Cryptococcal infections. MDPI 2023-01-27 /pmc/articles/PMC9952215/ /pubmed/36830167 http://dx.doi.org/10.3390/antibiotics12020256 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Aguiar, Tawanny K. B.
Feitosa, Ricardo M.
Neto, Nilton A. S.
Malveira, Ellen A.
Gomes, Francisco I. R.
Costa, Ana C. M.
Freitas, Cleverson D. T.
Mesquita, Felipe P.
Souza, Pedro F. N.
Giving a Hand: Synthetic Peptides Boost the Antifungal Activity of Itraconazole against Cryptococcus neoformans
title Giving a Hand: Synthetic Peptides Boost the Antifungal Activity of Itraconazole against Cryptococcus neoformans
title_full Giving a Hand: Synthetic Peptides Boost the Antifungal Activity of Itraconazole against Cryptococcus neoformans
title_fullStr Giving a Hand: Synthetic Peptides Boost the Antifungal Activity of Itraconazole against Cryptococcus neoformans
title_full_unstemmed Giving a Hand: Synthetic Peptides Boost the Antifungal Activity of Itraconazole against Cryptococcus neoformans
title_short Giving a Hand: Synthetic Peptides Boost the Antifungal Activity of Itraconazole against Cryptococcus neoformans
title_sort giving a hand: synthetic peptides boost the antifungal activity of itraconazole against cryptococcus neoformans
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9952215/
https://www.ncbi.nlm.nih.gov/pubmed/36830167
http://dx.doi.org/10.3390/antibiotics12020256
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