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In vivo Imaging of Transgenic Leishmania Parasites in a Live Host
Published on: July 27, 2010
Genetic Iron Overload Hampers Development of Cutaneous Leishmaniasis in Mice
Edouard Charlebois1,2, Yupeng Li1,2, Victoria Wagner3,4
1Lady Davis Institute for Medical Research, Jewish General Hospital, Montreal, QC H3T 1E2, Canada.
Abstract:
The survival, growth, and virulence of Leishmania spp., a group of protozoan parasites, depends on the proper access and regulation of iron. Macrophages, Leishmania's host cell, may divert iron traffic by reducing uptake or by increasing the efflux of iron via the exporter ferroportin. This parasite has adapted by inhibiting the synthesis and inducing the degradation of ferroportin. To study the role of iron in leishmaniasis, we employed Hjv-/- mice, a model of hemochromatosis. The disruption of hemojuvelin (Hjv) abrogates the expression of the iron hormone hepcidin. This allows unrestricted iron entry into the plasma from ferroportin-expressing intestinal epithelial cells and tissue macrophages, resulting in systemic iron overload. Mice were injected with Leishmania major in hind footpads or intraperitoneally. Compared with wild-type controls, Hjv-/- mice displayed transient delayed growth of L. major in hind footpads, with a significant difference in parasite burden 4 weeks post-infection. Following acute intraperitoneal exposure to L. major, Hjv-/- peritoneal cells manifested increased expression of inflammatory cytokines and chemokines (Il1b, Tnfa, Cxcl2, and Ccl2). In response to infection with L. infantum, the causative agent of visceral leishmaniasis, Hjv-/- and control mice developed similar liver and splenic parasite burden despite vastly different tissue iron content and ferroportin expression. Thus, genetic iron overload due to hemojuvelin deficiency appears to mitigate the early development of only cutaneous leishmaniasis.
Insights
Genetic iron overload in hemojuvelin (Hjv) deficient mice delayed early growth of Leishmania major in cutaneous leishmaniasis but did not affect visceral leishmaniasis progression.
Area of Science:
- Parasitology
- Immunology
- Iron Metabolism
Background:
- Iron is crucial for Leishmania parasite survival and virulence.
- Macrophages, the host cells, regulate iron availability to combat Leishmania.
- Leishmania parasites have evolved mechanisms to manipulate host iron homeostasis, including ferroportin regulation.
Purpose of the Study:
- To investigate the role of systemic iron overload in modulating leishmaniasis.
- To utilize hemojuvelin (Hjv)-deficient mice, a model of hemochromatosis, to study iron's impact on Leishmania infection.
Main Methods:
- Employing Hjv-/- mice, which exhibit abrogated hepcidin expression and systemic iron overload.
- Infecting Hjv-/- and wild-type mice with Leishmania major (cutaneous) and Leishmania infantum (visceral).
- Assessing parasite burden, inflammatory responses, and ferroportin expression in infected tissues.
Main Results:
- Hjv-/- mice showed transiently delayed growth and reduced parasite burden of L. major in footpads.
- Peritoneal cells from infected Hjv-/- mice exhibited increased inflammatory cytokine and chemokine expression.
- Liver and splenic parasite burdens were similar in Hjv-/- and control mice infected with L. infantum, despite iron level differences.
Conclusions:
- Genetic iron overload due to hemojuvelin deficiency mitigates early cutaneous leishmaniasis development.
- Systemic iron overload does not significantly impact the progression of visceral leishmaniasis caused by L. infantum.
- Iron dysregulation plays a differential role in various forms of leishmaniasis.
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