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  1.  18
    Exploitation of host signal transduction pathways and cytoskeletal functions by invasive bacteria.I. Rosenshie & B. Brett Finlay - 1993 - Bioessays 15 (1):17-24.
    Many bacteria that cause disease have the capacity to enter into and live within eukaryotic cells such as epithelial cells and macrophages. The mechanisms used by these organisms to achieve and maintain this intracellular lifestyle vary considerably, but most mechanisms involve subversion and exploitation of host cell functions. Entry into non‐phagocytic cells involves triggering host signal transduction mechanisms to induce rearrangement of the host cytoskeleton, thereby facilitating bacterial uptake. Once inside the host cell, intracellular pathogens either remain within membrane bound (...)
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  2.  17
    Salmonella: Now you see it, now you don't.Murry A. Stein, Scott D. Mills & B. Brett Finlay - 1994 - Bioessays 16 (8):537-538.
    Diseases caused by Salmonella species are characterized by bacterial invasion of host cells. Salmonella invasion requires a genetic locus (inv) with homology to bacterial systems involved in specific protein export and organelle assembly. Until recently, the actual Salmonella invasion factors exported or assembled by the inv system remained unidentified. It now appears that Salmonella produces novel appendages upon contact with host cells. These appendages are transient, appearing and disappearing rapidly from the bacterial surface. Appendages are altered in strains unable to (...)
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  3.  22
    Harvesting the biological potential of the human gut microbiome.Benjamin P. Willing, L. Caetano M. Antunes, Kristie M. Keeney, Rosana Br Ferreira & B. Brett Finlay - 2011 - Bioessays 33 (6):414-418.
    Graphical AbstractIdentifying the properties and molecules of the intestinal microbiome may help our understanding of various diseases and therefore facilitate their treatment; from excluding pathogens to manipulation of the immune system and regulation of non-intestinal sites.
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