Related Experiment Video
Updated: Sep 20, 2026

Forward Genetics Screens Using Macrophages to Identify Toxoplasma gondii Genes Important for Resistance to IFN-γ-Dependent Cell Autonomous Immunity
Published on: March 12, 2015
A novel population of Gr-1+-activated macrophages induced during acute toxoplasmosis
Dana G Mordue1, L David Sibley
1Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, MO 63110, USA.
Abstract:
Macrophages are potent mediators of parasite control following in vitro activation, yet the subsets of mononuclear cells that contribute to resistance in vivo remain poorly defined. To identify effector cells that contribute to the control of Toxoplasma gondii during the initial stages of disseminated infection, we developed a low-dose intraperitoneal challenge model. A population of unusual macrophage-like cells was recruited to the peritoneal cavity during the first 4 days postinfection. Surprisingly, these cells expressed the granulocyte marker Gr-1 and the macrophage marker CD68. They also expressed high levels of major histocompatibility complex class II and low levels of F4/80 and CD11b and were negative for the immature myeloid cell marker CD31, the dendritic cell marker CD11c, and the B cell marker B220. Gr-1+ macrophages produced interleukin-12 p40, generated reactive nitrogen intermediates during acute infection, and inhibited virulent type I and nonvirulent type II strains of the parasite in vitro. Gr-1+ macrophages were the primary cell type recruited in response to nonvirulent type II strain parasites, and large numbers of neutrophils (Gr-1+/CD68-) were also recruited to the peritoneum in response to virulent type I strain parasites. Our findings suggest that activated CD68+/Gr-1+ macrophages contribute to parasite control during infection by directly inhibiting parasite replication and through production of T helper cell type I cytokines.
Insights
Unusual Gr-1+ macrophages control Toxoplasma gondii infection by inhibiting parasite replication and producing key cytokines. These findings reveal novel immune cells crucial for host defense against parasitic infections.
Area of Science:
- Immunology
- Cell Biology
- Parasitology
Background:
- Macrophages are vital for controlling parasitic infections, but specific immune cell subsets involved in vivo are unclear.
- Understanding these effector cells is crucial for developing effective treatments against Toxoplasma gondii.
Purpose of the Study:
- To identify mononuclear cell subsets mediating parasite control during early disseminated Toxoplasma gondii infection.
- To characterize the phenotype and function of novel macrophage-like cells recruited during infection.
Main Methods:
- Developed a low-dose intraperitoneal challenge model in mice.
- Analyzed peritoneal lavage cells using flow cytometry and immunophenotyping.
- Assessed cytokine production (interleukin-12 p40) and reactive nitrogen intermediate generation in vitro.
Main Results:
- Identified a unique population of CD68+/Gr-1+ macrophage-like cells in the peritoneal cavity.
- These Gr-1+ macrophages produced interleukin-12 p40 and inhibited parasite growth in vitro.
- Neutrophils were recruited in response to virulent type I parasites, while Gr-1+ macrophages were key for nonvirulent type II strains.
Conclusions:
- Activated CD68+/Gr-1+ macrophages play a significant role in controlling Toxoplasma gondii infection.
- These cells inhibit parasite replication directly and promote T helper cell type I responses.
- The findings highlight a novel mechanism of innate immunity against parasitic infections.
Related Concept Videos
Toxoplasmosis
Cell-mediated Immune Responses

