Interleukin-3-deficient mice have increased resistance to blood-stage malaria
Sarah R Auclair1, Kenneth E Roth, Bryan L Saunders
1Department of Biology, James Madison University, Harrisonburg, Virginia, USA.
Abstract:
The contribution of interleukin-3 (IL-3), a hematopoietic growth factor and immunoregulatory cytokine, to resistance to blood-stage malaria was investigated by infecting IL-3-deficient (knockout [KO]) mice with Plasmodium berghei NK65. Male IL-3 KO mice, but not female mice, were more resistant to infection than wild-type (WT) mice, as evidenced by lower peak parasitemia and prolonged survival. Both male and female IL-3 KO mice had increased splenomegaly and were more anemic than corresponding WT mice. Anemia was compensated for by an increase in bone marrow and splenic erythropoiesis in IL-3 KO mice, as evidenced by higher levels of erythroid progenitors. Plasma levels of gamma interferon (IFN-γ) and CXCL9 (monokine induced by IFN-γ [MIG]) were found to be significantly reduced in IL-3 KO mice during early stages of infection. In contrast, granulocyte colony-stimulating factor (G-CSF) levels were significantly higher, and the percentage of peripheral blood neutrophils lower, in infected IL-3 KO mice than in WT counterparts. Overall, our results indicate that IL-3 plays a critical role in suppressing protective immunity to P. berghei NK65 infection and that it is involved in inhibiting the development of splenomegaly, anemia, and erythropoiesis. IL-3 also influences IFN-γ, CXCL9, and G-CSF production in response to infection. The abnormal responses seen in infected IL-3 KO mice may be due to the lack of IL-3 during development, to the lack of IL-3 in the infected mature mice, or to both.
Insights
Interleukin-3 (IL-3) suppresses protective immunity against malaria. IL-3 deficient mice showed increased resistance, reduced parasite levels, and prolonged survival, indicating IL-3
Area of Science:
- Immunology
- Hematology
- Infectious Diseases
Background:
- Interleukin-3 (IL-3) is a hematopoietic growth factor and immunoregulatory cytokine.
- Its role in malaria resistance is not fully understood.
Purpose of the Study:
- To investigate the contribution of IL-3 to resistance against blood-stage malaria (Plasmodium berghei NK65).
Main Methods:
- Infection of IL-3-deficient (knockout [KO]) mice and wild-type (WT) mice with P. berghei NK65.
- Assessment of parasitemia, survival, splenomegaly, anemia, erythropoiesis, and cytokine levels (IFN-γ, CXCL9, G-CSF).
Main Results:
- Male IL-3 KO mice exhibited greater resistance than WT mice, with lower parasitemia and longer survival.
- IL-3 KO mice showed increased splenomegaly and anemia, compensated by enhanced erythropoiesis.
- Reduced IFN-γ and CXCL9, but increased G-CSF, were observed in IL-3 KO mice during infection.
Conclusions:
- IL-3 suppresses protective immunity to P. berghei NK65 infection.
- IL-3 influences splenomegaly, anemia, erythropoiesis, and cytokine production during malaria.
- The findings highlight IL-3's complex role in host defense against malaria.


