Cargando…

Effect of Myrtenol and Its Synergistic Interactions with Antimicrobial Drugs in the Inhibition of Single and Mixed Biofilms of Candida auris and Klebsiella pneumoniae

The increased incidence of mixed infections requires that the scientific community develop novel antimicrobial molecules. Essential oils and their bioactive pure compounds have been found to exhibit a wide range of remarkable biological activities and are attracting more and more attention. Therefor...

Descripción completa

Detalles Bibliográficos
Autores principales: Maione, Angela, La Pietra, Alessandra, de Alteriis, Elisabetta, Mileo, Aldo, De Falco, Maria, Guida, Marco, Galdiero, Emilia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9501169/
https://www.ncbi.nlm.nih.gov/pubmed/36144375
http://dx.doi.org/10.3390/microorganisms10091773
_version_ 1784795407784607744
author Maione, Angela
La Pietra, Alessandra
de Alteriis, Elisabetta
Mileo, Aldo
De Falco, Maria
Guida, Marco
Galdiero, Emilia
author_facet Maione, Angela
La Pietra, Alessandra
de Alteriis, Elisabetta
Mileo, Aldo
De Falco, Maria
Guida, Marco
Galdiero, Emilia
author_sort Maione, Angela
collection PubMed
description The increased incidence of mixed infections requires that the scientific community develop novel antimicrobial molecules. Essential oils and their bioactive pure compounds have been found to exhibit a wide range of remarkable biological activities and are attracting more and more attention. Therefore, the aim of this study was to evaluate myrtenol (MYR), one of the constituents commonly found in some essential oils, for its potential to inhibit biofilms alone and in combination with antimicrobial drugs against Candida auris/Klebsiella pneumoniae single and mixed biofilms. The antimicrobial activity of MYR was evaluated by determining bactericidal/fungicidal concentrations (MIC), and biofilm formation at sub-MICs was analyzed in a 96-well microtiter plate by crystal violet, XTT reduction assay, and CFU counts. The synergistic interaction between MYR and antimicrobial drugs was evaluated by the checkerboard method. The study found that MYR exhibited antimicrobial activity at high concentrations while showing efficient antibiofilm activity against single and dual biofilms. To understand the underlying mechanism by which MYR promotes single/mixed-species biofilm inhibition, we observed a significant downregulation in the expression of mrkA, FKS1, ERG11, and ALS5 genes, which are associated with bacterial motility, adhesion, and biofilm formation as well as increased ROS production, which can play an important role in the inhibition of biofilm formation. In addition, the checkerboard microdilution assay showed that MYR was strongly synergistic with both caspofungin (CAS) and meropenem (MEM) in inhibiting the growth of Candida auris/Klebsiella pneumoniae-mixed biofilms. Furthermore, the tested concentrations showed an absence of toxicity for both mammalian cells in the in vitro and in vivo Galleria mellonella models. Thus, MYR could be considered as a potential agent for the management of polymicrobial biofilms.
format Online
Article
Text
id pubmed-9501169
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-95011692022-09-24 Effect of Myrtenol and Its Synergistic Interactions with Antimicrobial Drugs in the Inhibition of Single and Mixed Biofilms of Candida auris and Klebsiella pneumoniae Maione, Angela La Pietra, Alessandra de Alteriis, Elisabetta Mileo, Aldo De Falco, Maria Guida, Marco Galdiero, Emilia Microorganisms Article The increased incidence of mixed infections requires that the scientific community develop novel antimicrobial molecules. Essential oils and their bioactive pure compounds have been found to exhibit a wide range of remarkable biological activities and are attracting more and more attention. Therefore, the aim of this study was to evaluate myrtenol (MYR), one of the constituents commonly found in some essential oils, for its potential to inhibit biofilms alone and in combination with antimicrobial drugs against Candida auris/Klebsiella pneumoniae single and mixed biofilms. The antimicrobial activity of MYR was evaluated by determining bactericidal/fungicidal concentrations (MIC), and biofilm formation at sub-MICs was analyzed in a 96-well microtiter plate by crystal violet, XTT reduction assay, and CFU counts. The synergistic interaction between MYR and antimicrobial drugs was evaluated by the checkerboard method. The study found that MYR exhibited antimicrobial activity at high concentrations while showing efficient antibiofilm activity against single and dual biofilms. To understand the underlying mechanism by which MYR promotes single/mixed-species biofilm inhibition, we observed a significant downregulation in the expression of mrkA, FKS1, ERG11, and ALS5 genes, which are associated with bacterial motility, adhesion, and biofilm formation as well as increased ROS production, which can play an important role in the inhibition of biofilm formation. In addition, the checkerboard microdilution assay showed that MYR was strongly synergistic with both caspofungin (CAS) and meropenem (MEM) in inhibiting the growth of Candida auris/Klebsiella pneumoniae-mixed biofilms. Furthermore, the tested concentrations showed an absence of toxicity for both mammalian cells in the in vitro and in vivo Galleria mellonella models. Thus, MYR could be considered as a potential agent for the management of polymicrobial biofilms. MDPI 2022-09-02 /pmc/articles/PMC9501169/ /pubmed/36144375 http://dx.doi.org/10.3390/microorganisms10091773 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
Maione, Angela
La Pietra, Alessandra
de Alteriis, Elisabetta
Mileo, Aldo
De Falco, Maria
Guida, Marco
Galdiero, Emilia
Effect of Myrtenol and Its Synergistic Interactions with Antimicrobial Drugs in the Inhibition of Single and Mixed Biofilms of Candida auris and Klebsiella pneumoniae
title Effect of Myrtenol and Its Synergistic Interactions with Antimicrobial Drugs in the Inhibition of Single and Mixed Biofilms of Candida auris and Klebsiella pneumoniae
title_full Effect of Myrtenol and Its Synergistic Interactions with Antimicrobial Drugs in the Inhibition of Single and Mixed Biofilms of Candida auris and Klebsiella pneumoniae
title_fullStr Effect of Myrtenol and Its Synergistic Interactions with Antimicrobial Drugs in the Inhibition of Single and Mixed Biofilms of Candida auris and Klebsiella pneumoniae
title_full_unstemmed Effect of Myrtenol and Its Synergistic Interactions with Antimicrobial Drugs in the Inhibition of Single and Mixed Biofilms of Candida auris and Klebsiella pneumoniae
title_short Effect of Myrtenol and Its Synergistic Interactions with Antimicrobial Drugs in the Inhibition of Single and Mixed Biofilms of Candida auris and Klebsiella pneumoniae
title_sort effect of myrtenol and its synergistic interactions with antimicrobial drugs in the inhibition of single and mixed biofilms of candida auris and klebsiella pneumoniae
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9501169/
https://www.ncbi.nlm.nih.gov/pubmed/36144375
http://dx.doi.org/10.3390/microorganisms10091773
work_keys_str_mv AT maioneangela effectofmyrtenolanditssynergisticinteractionswithantimicrobialdrugsintheinhibitionofsingleandmixedbiofilmsofcandidaaurisandklebsiellapneumoniae
AT lapietraalessandra effectofmyrtenolanditssynergisticinteractionswithantimicrobialdrugsintheinhibitionofsingleandmixedbiofilmsofcandidaaurisandklebsiellapneumoniae
AT dealteriiselisabetta effectofmyrtenolanditssynergisticinteractionswithantimicrobialdrugsintheinhibitionofsingleandmixedbiofilmsofcandidaaurisandklebsiellapneumoniae
AT mileoaldo effectofmyrtenolanditssynergisticinteractionswithantimicrobialdrugsintheinhibitionofsingleandmixedbiofilmsofcandidaaurisandklebsiellapneumoniae
AT defalcomaria effectofmyrtenolanditssynergisticinteractionswithantimicrobialdrugsintheinhibitionofsingleandmixedbiofilmsofcandidaaurisandklebsiellapneumoniae
AT guidamarco effectofmyrtenolanditssynergisticinteractionswithantimicrobialdrugsintheinhibitionofsingleandmixedbiofilmsofcandidaaurisandklebsiellapneumoniae
AT galdieroemilia effectofmyrtenolanditssynergisticinteractionswithantimicrobialdrugsintheinhibitionofsingleandmixedbiofilmsofcandidaaurisandklebsiellapneumoniae