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Nisin Mutant Prevention Concentration and the Role of Subinhibitory Concentrations on Resistance Development by Diabetic Foot Staphylococci

The most prevalent microorganism in diabetic foot infections (DFI) is Staphylococcus aureus, an important multidrug-resistant pathogen. The antimicrobial peptide nisin is a promising compound for DFI treatment, being effective against S. aureus. However, to avoid the selection of resistant mutants,...

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Autores principales: Costa, Margarida, Meirinhos, Cláudia, Cunha, Eva, Gomes, Diana, Pereira, Marcelo, Dias, Ricardo, Tavares, Luís, Oliveira, Manuela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9311964/
https://www.ncbi.nlm.nih.gov/pubmed/35884226
http://dx.doi.org/10.3390/antibiotics11070972
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author Costa, Margarida
Meirinhos, Cláudia
Cunha, Eva
Gomes, Diana
Pereira, Marcelo
Dias, Ricardo
Tavares, Luís
Oliveira, Manuela
author_facet Costa, Margarida
Meirinhos, Cláudia
Cunha, Eva
Gomes, Diana
Pereira, Marcelo
Dias, Ricardo
Tavares, Luís
Oliveira, Manuela
author_sort Costa, Margarida
collection PubMed
description The most prevalent microorganism in diabetic foot infections (DFI) is Staphylococcus aureus, an important multidrug-resistant pathogen. The antimicrobial peptide nisin is a promising compound for DFI treatment, being effective against S. aureus. However, to avoid the selection of resistant mutants, correct drug therapeutic doses must be established, being also important to understand if nisin subinhibitory concentrations (subMIC) can potentiate resistant genes transfer between clinical isolates or mutations in genes associated with nisin resistance. The mutant selection window (MSW) of nisin was determined for 23 DFI S. aureus isolates; a protocol aiming to prompt vanA horizontal transfer between enterococci to clinical S. aureus was performed; and nisin subMIC effect on resistance evolution was assessed through whole-genome sequencing (WGS) applied to isolates subjected to a MEGA-plate assay. MSW ranged from 5–360 μg/mL for two isolates, from 5–540 μg/mL for three isolates, and from 5–720 μg/mL for one isolate. In the presence of nisin subMIC values, no transconjugants were obtained, indicating that nisin does not seem to promote vanA transfer. Finally, WGS analysis showed that incubation in the presence of nisin subMIC did not promote the occurrence of significant mutations in genes related to nisin resistance, supporting nisin application to DFI treatment.
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spelling pubmed-93119642022-07-26 Nisin Mutant Prevention Concentration and the Role of Subinhibitory Concentrations on Resistance Development by Diabetic Foot Staphylococci Costa, Margarida Meirinhos, Cláudia Cunha, Eva Gomes, Diana Pereira, Marcelo Dias, Ricardo Tavares, Luís Oliveira, Manuela Antibiotics (Basel) Article The most prevalent microorganism in diabetic foot infections (DFI) is Staphylococcus aureus, an important multidrug-resistant pathogen. The antimicrobial peptide nisin is a promising compound for DFI treatment, being effective against S. aureus. However, to avoid the selection of resistant mutants, correct drug therapeutic doses must be established, being also important to understand if nisin subinhibitory concentrations (subMIC) can potentiate resistant genes transfer between clinical isolates or mutations in genes associated with nisin resistance. The mutant selection window (MSW) of nisin was determined for 23 DFI S. aureus isolates; a protocol aiming to prompt vanA horizontal transfer between enterococci to clinical S. aureus was performed; and nisin subMIC effect on resistance evolution was assessed through whole-genome sequencing (WGS) applied to isolates subjected to a MEGA-plate assay. MSW ranged from 5–360 μg/mL for two isolates, from 5–540 μg/mL for three isolates, and from 5–720 μg/mL for one isolate. In the presence of nisin subMIC values, no transconjugants were obtained, indicating that nisin does not seem to promote vanA transfer. Finally, WGS analysis showed that incubation in the presence of nisin subMIC did not promote the occurrence of significant mutations in genes related to nisin resistance, supporting nisin application to DFI treatment. MDPI 2022-07-19 /pmc/articles/PMC9311964/ /pubmed/35884226 http://dx.doi.org/10.3390/antibiotics11070972 Text en © 2022 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
Costa, Margarida
Meirinhos, Cláudia
Cunha, Eva
Gomes, Diana
Pereira, Marcelo
Dias, Ricardo
Tavares, Luís
Oliveira, Manuela
Nisin Mutant Prevention Concentration and the Role of Subinhibitory Concentrations on Resistance Development by Diabetic Foot Staphylococci
title Nisin Mutant Prevention Concentration and the Role of Subinhibitory Concentrations on Resistance Development by Diabetic Foot Staphylococci
title_full Nisin Mutant Prevention Concentration and the Role of Subinhibitory Concentrations on Resistance Development by Diabetic Foot Staphylococci
title_fullStr Nisin Mutant Prevention Concentration and the Role of Subinhibitory Concentrations on Resistance Development by Diabetic Foot Staphylococci
title_full_unstemmed Nisin Mutant Prevention Concentration and the Role of Subinhibitory Concentrations on Resistance Development by Diabetic Foot Staphylococci
title_short Nisin Mutant Prevention Concentration and the Role of Subinhibitory Concentrations on Resistance Development by Diabetic Foot Staphylococci
title_sort nisin mutant prevention concentration and the role of subinhibitory concentrations on resistance development by diabetic foot staphylococci
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9311964/
https://www.ncbi.nlm.nih.gov/pubmed/35884226
http://dx.doi.org/10.3390/antibiotics11070972
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