• Skip to primary navigation
  • Skip to main content
  • Skip to footer
  • Biblioteca
  • Museu
  • Pessoal
    • Webmail
    • Área de Docentes
    • Área de Não-Docentes
  • Estudantes
    • Webmail
    • Moodle
    • NetP@
    • Escola Doutoral
    • Serviços Académicos
    • Trabalhar no IHMT

IHMT

Instituto de Higiene e Medicina Tropical

  • O Instituto
    • Missão
    • Mensagem do Diretor
    • Órgãos de governo
    • Docentes e investigadores
    • Portal de Denúncias UNL
  • Ensino
    • Mestrados
    • Doutoramentos
    • Cursos de Especialização
    • Formação transversal
    • Cursos de Curta Duração
    • Ensino à Distância
    • Apoio ao Desenvolvimento
    • Serviços académicos
    • NOVA Open Academy
  • Investigação
    • Centro GHTM
    • Unidades de Ensino e de Investigação (UEI)
      • Unidade de Clínica Tropical
      • Unidade de Microbiologia Médica
      • Unidade de Parasitologia Médica
      • Unidade de Saúde Pública Global
      • Serviço de Apoio à Ciência e Comunidade
    • Biobanco
    • BLOODless
    • Centro Colaborador OMS
    • Publicações
  • Serviços e gestão
    • Biblioteca
    • Sistema de Qualidade
    • Estatutos e regulamentos
    • Plano de Atividades
    • Relatório de Atividades
    • Relatório de Gestão
    • Contratos públicos
    • Recursos humanos
      • Concursos e bolsas
        • Concursos – Docentes e Investigadores
        • Concursos – Não Docentes e Não Investigadores
        • Bolsas de Investigação
      • Contratos
      • Avaliação de Desempenho
        • Ciclo Avaliativo
          • Biénio 2021-2022
          • Biénio 2023-2024
        • Conselho Coordenador de Avaliação
        • Comissão Paritária
      • Mobilidade
      • Listas Nominativas
  • Doenças Tropicais
    • Consulta do Viajante
    • Dossiês Informativos
    • Glossário
    • Museu
    • Vídeos
    • MosquitoWeb
  • Comunidade
    • Cooperação e Desenvolvimento
    • Formação
    • Parcerias
  • Contactos
  • Candidaturas
  • pt
    • pt
    • en
Home / Publicações / Enhancement of antibiotic activity by efflux inhibitors against multidrug resistant Mycobacterium tuberculosis clinical isolates from Brazil

Enhancement of antibiotic activity by efflux inhibitors against multidrug resistant Mycobacterium tuberculosis clinical isolates from Brazil

  • Autores: Coelho T, Couto I, Machado D, Maschmann R, Ramos D, Rossetti ML, Silva PA, Viveiros M, von Groll A
  • Ano de Publicação: 2015
  • Journal: Frontiers in Microbiology
  • Link: http://www.ncbi.nlm.nih.gov/pubmed/25972842

Drug resistant tuberculosis continues to increase and new approaches for its treatment are necessary. The identification of M. tuberculosis clinical isolates presenting efflux as part of their resistant phenotype has a major impact in tuberculosis treatment. In this work, we used a checkerboard procedure combined with the tetrazolium microplate-based assay (TEMA) to study single combinations between antituberculosis drugs and efflux inhibitors (EIs) against multidrug resistant M. tuberculosis clinical isolates using the fully susceptible strain H37Rv as reference. Efflux activity was studied on a real-time basis by a fluorometric method that uses ethidium bromide as efflux substrate. Quantification of efflux pump genes mRNA transcriptional levels were performed by RT-qPCR. The fractional inhibitory concentrations (FIC) indicated synergistic activity for the interactions between isoniazid, rifampicin, amikacin, ofloxacin, and ethidium bromide plus the EIs verapamil, thioridazine and chlorpromazine. The FICs ranged from 0.25, indicating a four-fold reduction on the MICs, to 0.015, 64-fold reduction. The detection of active efflux by real-time fluorometry showed that all strains presented intrinsic efflux activity that contributes to the overall resistance which can be inhibited in the presence of the EIs. The quantification of the mRNA levels of the most important efflux pump genes on these strains shows that they are intrinsically predisposed to expel toxic compounds as the exposure to subinhibitory concentrations of antibiotics were not necessary to increase the pump mRNA levels when compared with the non-exposed counterpart. The results obtained in this study confirm that the intrinsic efflux activity contributes to the overall resistance in multidrug resistant clinical isolates of M. tuberculosis and that the inhibition of efflux pumps by the EIs can enhance the clinical effect of antibiotics that are their substrates.

Enhancement of antibiotic activity by efflux inhibitors against multidrug resistant Mycobacterium tuberculosis clinical isolates from Brazil

  • Autores: Coelho T, Couto I, Machado D, Maschmann R, Ramos D, Rossetti ML, Silva PA, Viveiros M, von Groll A
  • Ano de Publicação: 2015
  • Journal: Frontiers in Microbiology
  • Link: http://www.ncbi.nlm.nih.gov/pubmed/25972842

Drug resistant tuberculosis continues to increase and new approaches for its treatment are necessary. The identification of M. tuberculosis clinical isolates presenting efflux as part of their resistant phenotype has a major impact in tuberculosis treatment. In this work, we used a checkerboard procedure combined with the tetrazolium microplate-based assay (TEMA) to study single combinations between antituberculosis drugs and efflux inhibitors (EIs) against multidrug resistant M. tuberculosis clinical isolates using the fully susceptible strain H37Rv as reference. Efflux activity was studied on a real-time basis by a fluorometric method that uses ethidium bromide as efflux substrate. Quantification of efflux pump genes mRNA transcriptional levels were performed by RT-qPCR. The fractional inhibitory concentrations (FIC) indicated synergistic activity for the interactions between isoniazid, rifampicin, amikacin, ofloxacin, and ethidium bromide plus the EIs verapamil, thioridazine and chlorpromazine. The FICs ranged from 0.25, indicating a four-fold reduction on the MICs, to 0.015, 64-fold reduction. The detection of active efflux by real-time fluorometry showed that all strains presented intrinsic efflux activity that contributes to the overall resistance which can be inhibited in the presence of the EIs. The quantification of the mRNA levels of the most important efflux pump genes on these strains shows that they are intrinsically predisposed to expel toxic compounds as the exposure to subinhibitory concentrations of antibiotics were not necessary to increase the pump mRNA levels when compared with the non-exposed counterpart. The results obtained in this study confirm that the intrinsic efflux activity contributes to the overall resistance in multidrug resistant clinical isolates of M. tuberculosis and that the inhibition of efflux pumps by the EIs can enhance the clinical effect of antibiotics that are their substrates.

Footer

INSTITUTO DE HIGIENE E
MEDICINA TROPICAL
UNIVERSIDADE NOVA DE LISBOA
Rua da Junqueira, 100 1349-008 Lisboa
T +351 213 652 600
geral@ihmt.unl.pt

Consulta do Viajante e Medicina Tropical
T +351 213 652 630
T +351 213 652 690
T +351 91 182 37 48
T +351 91 182 44 67
medicina.viagens@ihmt.unl.pt

  • Ensino
  • Investigação
  • Medicina Tropical
  • Cooperação
  • Portal de Denúncias UNL

NOVA University of Lisbon Logo

Siga-nos

  • Facebook
  • Instagram
  • LinkedIn
  • Twitter
  • YouTube

Receber a “newsletter”

© Copyright 2025 IHMT-UNL Todos os Direitos Reservados.
  • Universidade Nova de Lisboa
  • Fundação para a Ciência e a Tecnologia

    UIDB/04413/2020
    UIDP/04413/2020

We use cookies to ensure that we give you the best experience on our website. If you continue to use this site we will assume that you are happy with it.Ok