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Published on: March 1, 2011
Potent innate immune response to pathogenic leptospira in human whole blood
Marga G A Goris1, Jiri F P Wagenaar, Rudy A Hartskeerl
1Royal Tropical Institute (KIT), KIT Biomedical Research, Amsterdam, The Netherlands. m.goris@kit.nl
Background:
Leptospirosis is caused by pathogenic spirochetes of the genus Leptospira. The bacteria enter the human body via abraded skin or mucous membranes and may disseminate throughout. In general the clinical picture is mild but some patients develop rapidly progressive, severe disease with a high case fatality rate. Not much is known about the innate immune response to leptospires during haematogenous dissemination. Previous work showed that a human THP-1 cell line recognized heat-killed leptospires and leptospiral LPS through TLR2 instead of TLR4. The LPS of virulent leptospires displayed a lower potency to trigger TNF production by THP-1 cells compared to LPS of non-virulent leptospires.
Methodology/Principal Findings:
We investigated the host response and killing of virulent and non-virulent Leptospira of different serovars by human THP-1 cells, human PBMC's and human whole blood. Virulence of each leptospiral strain was tested in a well accepted standard guinea pig model. Virulent leptospires displayed complement resistance in human serum and whole blood while in-vitro attenuated non-virulent leptospires were rapidly killed in a complement dependent manner. In vitro stimulation of THP-1 and PBMC's with heat-killed and living leptospires showed differential serovar and cell type dependence of cytokine induction. However, at low, physiological, leptospiral dose, living virulent complement resistant strains were consistently more potent in whole blood stimulations than the corresponding non-virulent complement sensitive strains. At higher dose living virulent and non-virulent leptospires were equipotent in whole blood. Inhibition of different TLRs indicated that both TLR2 and TLR4 as well as TLR5 play a role in the whole blood cytokine response to living leptospires.
Conclusions/Significance:
Thus, in a minimally altered system as human whole blood, highly virulent Leptospira are potent inducers of the cytokine response.
Insights
Highly virulent Leptospira are potent inducers of cytokine responses in human whole blood, despite complement resistance. This study investigated the innate immune response to Leptospira during dissemination.
Area of Science:
- Infectious Diseases
- Immunology
- Microbiology
Background:
- Leptospirosis, caused by Leptospira, can range from mild to severe.
- The innate immune response during Leptospira dissemination is not well understood.
- Previous studies indicated Leptospira LPS is recognized via TLR2, with lower TNF induction by virulent strains.
Purpose of the Study:
- To investigate the host response and killing of virulent and non-virulent Leptospira by human immune cells.
- To understand the role of complement and Toll-like receptors (TLRs) in the immune response to Leptospira.
- To compare the cytokine induction potency of virulent and non-virulent Leptospira strains.
Main Methods:
- Human THP-1 cells, PBMCs, and whole blood were used to study host response.
- Leptospiral virulence was assessed using a guinea pig model.
- Cytokine induction was measured following stimulation with heat-killed and live Leptospira.
- TLR inhibition assays were performed to determine receptor involvement.
Main Results:
- Virulent Leptospira exhibited complement resistance, while non-virulent strains were killed complement-dependently.
- Both virulent and non-virulent Leptospira induced differential cytokine responses depending on serovar and cell type.
- At low doses, virulent Leptospira were more potent inducers of cytokine response in whole blood.
- TLR2, TLR4, and TLR5 were implicated in the whole blood cytokine response to live Leptospira.
Conclusions:
- Virulent Leptospira are potent inducers of cytokine responses in human whole blood.
- Complement resistance contributes to the virulence of Leptospira.
- TLRs play a significant role in recognizing Leptospira and initiating immune responses.
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