• Title of article

    Drug Tolerance in Replicating Mycobacteria Mediated by a Macrophage-Induced Efflux Mechanism

  • Author/Authors

    Kristin N. Adams، نويسنده , , Kevin Takaki، نويسنده , , Lynn E. Connolly، نويسنده , , Heather Wiedenhoft، نويسنده , , Kathryn Winglee، نويسنده , , Olivier Humbert، نويسنده , , Paul H. Edelstein، نويسنده , , Christine L. Cosma، نويسنده , , Lalita Ramakrishnan، نويسنده ,

  • Issue Information
    هفته نامه با شماره پیاپی سال 2011
  • Pages
    15
  • From page
    39
  • To page
    53
  • Abstract
    Treatment of tuberculosis, a complex granulomatous disease, requires long-term multidrug therapy to overcome tolerance, an epigenetic drug resistance that is widely attributed to nonreplicating bacterial subpopulations. Here, we deploy Mycobacterium marinum-infected zebrafish larvae for in vivo characterization of antitubercular drug activity and tolerance. We describe the existence of multidrug-tolerant organisms that arise within days of infection, are enriched in the replicating intracellular population, and are amplified and disseminated by the tuberculous granuloma. Bacterial efflux pumps that are required for intracellular growth mediate this macrophage-induced tolerance. This tolerant population also develops when Mycobacterium tuberculosis infects cultured macrophages, suggesting that it contributes to the burden of drug tolerance in human tuberculosis. Efflux pump inhibitors like verapamil reduce this tolerance. Thus, the addition of this currently approved drug or more specific efflux pump inhibitors to standard antitubercular therapy should shorten the duration of curative treatment.
  • Journal title
    CELL
  • Serial Year
    2011
  • Journal title
    CELL
  • Record number

    1020645