Cargando…

Comparative Antibacterial and Efflux Pump Inhibitory Activity of Isolated Nerolidol, Farnesol, and α-Bisabolol Sesquiterpenes and Their Liposomal Nanoformulations

The efflux systems are considered important mechanisms of bacterial resistance due to their ability to extrude various antibiotics. Several naturally occurring compounds, such as sesquiterpenes, have demonstrated antibacterial activity and the ability to inhibit efflux pumps in resistant strains. Th...

Descripción completa

Detalles Bibliográficos
Autores principales: Santana, Jorge Ederson Gonçalves, Oliveira-Tintino, Cícera Datiane de Morais, Gonçalves Alencar, Gabriel, Siqueira, Gustavo Miguel, Sampaio Alves, Daniel, Moura, Talysson Felismino, Tintino, Saulo Relison, de Menezes, Irwin Rose Alencar, Rodrigues, João Pedro Viana, Gonçalves, Vanessa Barbosa Pinheiro, Nicolete, Roberto, Emran, Talha Bin, Gonçalves Lima, Clara Mariana, Ahmad, Sheikh F., Coutinho, Henrique Douglas Melo, da Silva, Teresinha Gonçalves
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10675182/
https://www.ncbi.nlm.nih.gov/pubmed/38005371
http://dx.doi.org/10.3390/molecules28227649
_version_ 1785149790527422464
author Santana, Jorge Ederson Gonçalves
Oliveira-Tintino, Cícera Datiane de Morais
Gonçalves Alencar, Gabriel
Siqueira, Gustavo Miguel
Sampaio Alves, Daniel
Moura, Talysson Felismino
Tintino, Saulo Relison
de Menezes, Irwin Rose Alencar
Rodrigues, João Pedro Viana
Gonçalves, Vanessa Barbosa Pinheiro
Nicolete, Roberto
Emran, Talha Bin
Gonçalves Lima, Clara Mariana
Ahmad, Sheikh F.
Coutinho, Henrique Douglas Melo
da Silva, Teresinha Gonçalves
author_facet Santana, Jorge Ederson Gonçalves
Oliveira-Tintino, Cícera Datiane de Morais
Gonçalves Alencar, Gabriel
Siqueira, Gustavo Miguel
Sampaio Alves, Daniel
Moura, Talysson Felismino
Tintino, Saulo Relison
de Menezes, Irwin Rose Alencar
Rodrigues, João Pedro Viana
Gonçalves, Vanessa Barbosa Pinheiro
Nicolete, Roberto
Emran, Talha Bin
Gonçalves Lima, Clara Mariana
Ahmad, Sheikh F.
Coutinho, Henrique Douglas Melo
da Silva, Teresinha Gonçalves
author_sort Santana, Jorge Ederson Gonçalves
collection PubMed
description The efflux systems are considered important mechanisms of bacterial resistance due to their ability to extrude various antibiotics. Several naturally occurring compounds, such as sesquiterpenes, have demonstrated antibacterial activity and the ability to inhibit efflux pumps in resistant strains. Therefore, the objective of this research was to analyze the antibacterial and inhibitory activity of the efflux systems NorA, Tet(K), MsrA, and MepA by sesquiterpenes nerolidol, farnesol, and α-bisabolol, used either individually or in liposomal nanoformulation, against multi-resistant Staphylococcus aureus strains. The methodology consisted of in vitro testing of the ability of sesquiterpenes to reduce the Minimum Inhibitory Concentration (MIC) and enhance the action of antibiotics and ethidium bromide (EtBr) in broth microdilution assays. The following strains were used: S. aureus 1199B carrying the NorA efflux pump, resistant to norfloxacin; IS-58 strain carrying Tet(K), resistant to tetracyclines; RN4220 carrying MsrA, conferring resistance to erythromycin. For the EtBr fluorescence measurement test, K2068 carrying MepA was used. It was observed the individual sesquiterpenes exhibited better antibacterial activity as well as efflux pump inhibition. Farnesol showed the lowest MIC of 16.5 µg/mL against the S. aureus RN4220 strain. Isolated nerolidol stood out for reducing the MIC of EtBr to 5 µg/mL in the 1199B strain, yielding better results than the positive control CCCP, indicating strong evidence of NorA inhibition. The liposome formulations did not show promising results, except for liposome/farnesol, which reduced the MIC of EtBr against 1199B and RN4220. Further research is needed to evaluate the mechanisms of action involved in the inhibition of resistance mechanisms by the tested compounds.
format Online
Article
Text
id pubmed-10675182
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-106751822023-11-17 Comparative Antibacterial and Efflux Pump Inhibitory Activity of Isolated Nerolidol, Farnesol, and α-Bisabolol Sesquiterpenes and Their Liposomal Nanoformulations Santana, Jorge Ederson Gonçalves Oliveira-Tintino, Cícera Datiane de Morais Gonçalves Alencar, Gabriel Siqueira, Gustavo Miguel Sampaio Alves, Daniel Moura, Talysson Felismino Tintino, Saulo Relison de Menezes, Irwin Rose Alencar Rodrigues, João Pedro Viana Gonçalves, Vanessa Barbosa Pinheiro Nicolete, Roberto Emran, Talha Bin Gonçalves Lima, Clara Mariana Ahmad, Sheikh F. Coutinho, Henrique Douglas Melo da Silva, Teresinha Gonçalves Molecules Article The efflux systems are considered important mechanisms of bacterial resistance due to their ability to extrude various antibiotics. Several naturally occurring compounds, such as sesquiterpenes, have demonstrated antibacterial activity and the ability to inhibit efflux pumps in resistant strains. Therefore, the objective of this research was to analyze the antibacterial and inhibitory activity of the efflux systems NorA, Tet(K), MsrA, and MepA by sesquiterpenes nerolidol, farnesol, and α-bisabolol, used either individually or in liposomal nanoformulation, against multi-resistant Staphylococcus aureus strains. The methodology consisted of in vitro testing of the ability of sesquiterpenes to reduce the Minimum Inhibitory Concentration (MIC) and enhance the action of antibiotics and ethidium bromide (EtBr) in broth microdilution assays. The following strains were used: S. aureus 1199B carrying the NorA efflux pump, resistant to norfloxacin; IS-58 strain carrying Tet(K), resistant to tetracyclines; RN4220 carrying MsrA, conferring resistance to erythromycin. For the EtBr fluorescence measurement test, K2068 carrying MepA was used. It was observed the individual sesquiterpenes exhibited better antibacterial activity as well as efflux pump inhibition. Farnesol showed the lowest MIC of 16.5 µg/mL against the S. aureus RN4220 strain. Isolated nerolidol stood out for reducing the MIC of EtBr to 5 µg/mL in the 1199B strain, yielding better results than the positive control CCCP, indicating strong evidence of NorA inhibition. The liposome formulations did not show promising results, except for liposome/farnesol, which reduced the MIC of EtBr against 1199B and RN4220. Further research is needed to evaluate the mechanisms of action involved in the inhibition of resistance mechanisms by the tested compounds. MDPI 2023-11-17 /pmc/articles/PMC10675182/ /pubmed/38005371 http://dx.doi.org/10.3390/molecules28227649 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
Santana, Jorge Ederson Gonçalves
Oliveira-Tintino, Cícera Datiane de Morais
Gonçalves Alencar, Gabriel
Siqueira, Gustavo Miguel
Sampaio Alves, Daniel
Moura, Talysson Felismino
Tintino, Saulo Relison
de Menezes, Irwin Rose Alencar
Rodrigues, João Pedro Viana
Gonçalves, Vanessa Barbosa Pinheiro
Nicolete, Roberto
Emran, Talha Bin
Gonçalves Lima, Clara Mariana
Ahmad, Sheikh F.
Coutinho, Henrique Douglas Melo
da Silva, Teresinha Gonçalves
Comparative Antibacterial and Efflux Pump Inhibitory Activity of Isolated Nerolidol, Farnesol, and α-Bisabolol Sesquiterpenes and Their Liposomal Nanoformulations
title Comparative Antibacterial and Efflux Pump Inhibitory Activity of Isolated Nerolidol, Farnesol, and α-Bisabolol Sesquiterpenes and Their Liposomal Nanoformulations
title_full Comparative Antibacterial and Efflux Pump Inhibitory Activity of Isolated Nerolidol, Farnesol, and α-Bisabolol Sesquiterpenes and Their Liposomal Nanoformulations
title_fullStr Comparative Antibacterial and Efflux Pump Inhibitory Activity of Isolated Nerolidol, Farnesol, and α-Bisabolol Sesquiterpenes and Their Liposomal Nanoformulations
title_full_unstemmed Comparative Antibacterial and Efflux Pump Inhibitory Activity of Isolated Nerolidol, Farnesol, and α-Bisabolol Sesquiterpenes and Their Liposomal Nanoformulations
title_short Comparative Antibacterial and Efflux Pump Inhibitory Activity of Isolated Nerolidol, Farnesol, and α-Bisabolol Sesquiterpenes and Their Liposomal Nanoformulations
title_sort comparative antibacterial and efflux pump inhibitory activity of isolated nerolidol, farnesol, and α-bisabolol sesquiterpenes and their liposomal nanoformulations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10675182/
https://www.ncbi.nlm.nih.gov/pubmed/38005371
http://dx.doi.org/10.3390/molecules28227649
work_keys_str_mv AT santanajorgeedersongoncalves comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations
AT oliveiratintinociceradatianedemorais comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations
AT goncalvesalencargabriel comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations
AT siqueiragustavomiguel comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations
AT sampaioalvesdaniel comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations
AT mouratalyssonfelismino comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations
AT tintinosaulorelison comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations
AT demenezesirwinrosealencar comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations
AT rodriguesjoaopedroviana comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations
AT goncalvesvanessabarbosapinheiro comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations
AT nicoleteroberto comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations
AT emrantalhabin comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations
AT goncalveslimaclaramariana comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations
AT ahmadsheikhf comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations
AT coutinhohenriquedouglasmelo comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations
AT dasilvateresinhagoncalves comparativeantibacterialandeffluxpumpinhibitoryactivityofisolatednerolidolfarnesolandabisabololsesquiterpenesandtheirliposomalnanoformulations