Monocyte and macrophage functions in M-CSF-deficient op/op mice during experimental leishmaniasis.

2003 
Mice with a naturally occurring Csfm op / Csfm op (op/op) gene mutation lack functional mac- rophage-colony stimulating factor (M-CSF) and are deficient of M-CSF-derived macrophages. They are severely monocytopenic, and their remaining M-CSF- independent macrophages were shown to differ in dif- ferentiation and distinct functions when compared with phenotypically normal mice of the same back- ground. It is not known if osteopetrosis mice (op/op mice) are able to mount a specific immune response against intracellular pathogens, as this would require complex effector functions by macrophages. We therefore investigated the ability of op/op mice and their M-CSF-independent macrophages to combat in- fection with Leishmania major. op/op mice retained the ability to resist an infection with L. major by mounting a T helper cell type 1 cell response, elimi- nating parasites and resolving the lesions. Macro- phages from op/op mice were able to sufficiently per- form effector functions in vitro, such as phagocytosis, production of leishmanicidal nitric oxide (NO), kill- ing of parasites, and release of interleukin (IL)-12. There were quantitative differences, as M-CSF-de- rived macrophages from hematopoietic organs of control mice showed significantly higher rates of phagocytosis and higher NO release after stimulation with lipopolysaccharides than corresponding macro- phages from op/op mice. In contrast, when peritone- ally elicited macrophages were used, those from op/op mice revealed a stronger response than those from control mice with regard to release of NO or IL-12. These differences suggest that M-CSF-inde- pendent maturation of op/op monocytes subsequent to their release from hematopoietic tissue exerts in- fluence on their effector functions. However, M-CSF or M-CSF-derived macrophages are not necessary for an effective immune response against L. major. J. Leukoc. Biol. 73: 564-573; 2003.
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