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Tractable Mammalian Cell Infections with Protozoan-primed Bacteria
Published on: April 2, 2013
Rapid translocation of polarized MDCK cell monolayers by Leptospira interrogans, an invasive but nonintracellular
Michele A Barocchi1, Albert I Ko, Mitermayer Galvão Reis
1Division of Infectious Diseases and Immunity, School of Public Health, University of California, Berkeley, 94720, USA.
Abstract:
Pathogenic spirochetes of the genus Leptospira are a major cause of human zoonotic infectious disease worldwide. After gaining entry through the skin, the organism causes disease by hematogenously disseminating to multiple organs. The mechanism by which it penetrates the mammalian cell barriers to disseminate is not well understood. In this study, we used a low-passage-number isolate of Leptospira interrogans to elucidate the invasive potential of this spirochete. Quantification of bacteria by dark-field microscopy revealed that pathogenic spirochetes were able to translocate through polarized MDCK cell monolayers at a rate significantly greater than that of nonpathogenic Leptospira or a recognized invasive bacterial pathogen, Salmonella: In contrast to Salmonella, L. interrogans did not alter transepithelial electrical resistance during cell translocation. Both transmission and scanning electron microscopy revealed tight association of the extracellular spirochetes with the host cell plasma membrane, without membrane perturbations suggestive of cytoskeletal rearrangement. Spirochetes were not observed within intercellular junctions or membrane-bound compartments inside cells. They were found within the cytoplasm of only 8% of the counted cells. These results indicate that Leptospira is an invasive but not a facultative intracellular organism. We propose that the rapid translocation of mammalian cells by pathogenic Leptospira is a mechanism designed to evade killing by host cells that permits the organism to quickly reach the bloodstream and disseminate to multiple organs.
Insights
Pathogenic Leptospira spirochetes rapidly translocate through mammalian cells, unlike Salmonella. This invasion mechanism allows Leptospira to evade host defenses and disseminate effectively.
Area of Science:
- Microbiology
- Infectious Diseases
- Cell Biology
Background:
- Leptospira are pathogenic spirochetes causing zoonotic diseases worldwide.
- Leptospira disseminate hematogenously after skin entry, but invasion mechanisms are unclear.
Purpose of the Study:
- To elucidate the invasive potential of Leptospira interrogans.
- To understand how Leptospira penetrates mammalian cell barriers for dissemination.
Main Methods:
- Used low-passage Leptospira interrogans isolate.
- Quantified bacterial translocation through MDCK cell monolayers using dark-field microscopy.
- Utilized transmission and scanning electron microscopy.
Main Results:
- Pathogenic Leptospira translocated through cell monolayers faster than nonpathogenic strains or Salmonella.
- Leptospira did not alter transepithelial electrical resistance, unlike Salmonella.
- Electron microscopy showed tight association with host cell membranes, minimal intracellular presence, and no membrane perturbation.
Conclusions:
- Leptospira is invasive but not facultative intracellular.
- Rapid cell translocation is a proposed mechanism for evading host cell killing.
- This mechanism facilitates rapid bloodstream dissemination to multiple organs.
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