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Updated: May 30, 2026

Using a Bacterial Pathogen to Probe for Cellular and Organismic-level Host Responses
Published on: February 22, 2019
Characteristic features of intracellular pathogenic Leptospira in infected murine macrophages
Claudia Toma1, Nobuhiko Okura, Chitoshi Takayama
1Department of Molecular Bacteriology and Immunology, Graduate School of Medicine, University of the Ryukyus, Nishihara, Okinawa 903-0125, Japan. claudia@med.u-ryukyu.ac.jp
Abstract:
Leptospira interrogans is a spirochaete responsible for a zoonotic disease known as leptospirosis. Leptospires are able to penetrate the abraded skin and mucous membranes and rapidly disseminate to target organs such as the liver, lungs and kidneys. How this pathogen escape from innate immune cells and spread to target organs remains poorly understood. In this paper, the intracellular trafficking undertaken by non-pathogenic Leptospira biflexa and pathogenic L. interrogans in mouse bone marrow-derived macrophages was compared. The delayed in the clearance of L. interrogans was observed. Furthermore, the acquisition of lysosomal markers by L. interrogans-containing phagosomes lagged behind that of L. biflexa-containing phagosomes, and although bone marrow-derived macrophages could degrade L. biflexa as well as L. interrogans, a population of L. interrogans was able to survive and replicate. Intact leptospires were found within vacuoles at 24 h post infection, suggesting that bacterial replication occurs within a membrane-bound compartment. In contrast, L. biflexa were completely degraded at 24 h post infection. Furthermore, L. interrogans but not L. biflexa, were released to the extracellular milieu. These results suggest that pathogenic leptospires are able to survive, replicate and exit from mouse macrophages, enabling their eventual spread to target organs.
Insights
Pathogenic Leptospira interrogans survive and replicate within mouse macrophages, unlike non-pathogenic Leptospira biflexa. This allows leptospira to escape immune cells and spread to target organs.
Area of Science:
- Microbiology
- Immunology
- Pathogenesis
Background:
- Leptospira interrogans causes leptospirosis, a zoonotic disease.
- Leptospires invade through skin/mucous membranes, disseminating to organs.
- Mechanisms of immune evasion and organ spread are poorly understood.
Purpose of the Study:
- Compare intracellular trafficking of pathogenic L. interrogans and non-pathogenic L. biflexa in macrophages.
- Investigate how leptospires evade innate immune cells.
Main Methods:
- Infection of mouse bone marrow-derived macrophages with L. interrogans and L. biflexa.
- Analysis of intracellular bacterial survival, replication, and phagosome maturation.
- Observation of bacterial release from macrophages.
Main Results:
- L. interrogans showed delayed clearance and phagosome maturation compared to L. biflexa.
- Macrophages degraded L. biflexa but a subpopulation of L. interrogans survived and replicated within vacuoles.
- Intact L. interrogans were released extracellularly, while L. biflexa were fully degraded.
Conclusions:
- Pathogenic leptospires survive, replicate, and exit macrophages.
- This macrophage survival and egress facilitates dissemination to target organs.
- Understanding these mechanisms is crucial for leptospirosis pathogenesis.
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