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Updated: Aug 11, 2026

Isolation and Analysis of Brain-sequestered Leukocytes from Plasmodium berghei ANKA-infected Mice
Published on: January 2, 2013
Specific depletion of Ly6C(hi) inflammatory monocytes prevents immunopathology in experimental cerebral malaria
Beatrix Schumak1, Katrin Klocke1, Janina M Kuepper1
1Institute of Medical Microbiology, Immunology and Parasitology, University of Bonn, Bonn, Germany.
Abstract:
Plasmodium berghei ANKA (PbA) infection of C57BL/6 mice leads to experimental cerebral malaria (ECM) that is commonly associated with serious T cell mediated damage. In other parasitic infection models, inflammatory monocytes have been shown to regulate Th1 responses but their role in ECM remains poorly defined, whereas neutrophils are reported to contribute to ECM immune pathology. Making use of the recent development of specific monoclonal antibodies (mAb), we depleted in vivo Ly6C(hi) inflammatory monocytes (by anti-CCR2), Ly6G+ neutrophils (by anti-Ly6G) or both cell types (by anti-Gr1) during infection with Ovalbumin-transgenic PbA parasites (PbTg). Notably, the application of anti-Gr1 or anti-CCR2 but not anti-Ly6G antibodies into PbTg-infected mice prevented ECM development. In addition, depletion of Ly6C(hi) inflammatory monocytes but not neutrophils led to decreased IFNγ levels and IFNγ+CD8+ T effector cells in the brain. Importantly, anti-CCR2 mAb injection did not prevent the generation of PbTg-specific T cell responses in the periphery, whereas anti-Gr1 mAb injection strongly diminished T cell frequencies and CTL responses. In conclusion, the specific depletion of Ly6C(hi) inflammatory monocytes attenuated brain inflammation and immune cell recruitment to the CNS, which prevented ECM following Plasmodium infection, pointing out a substantial role of Ly6C+ monocytes in ECM inflammatory processes.
Insights
Depleting inflammatory monocytes, but not neutrophils, prevents experimental cerebral malaria (ECM) in mice. This study highlights the critical role of Ly6C+ monocytes in ECM pathogenesis and brain inflammation.
Area of Science:
- Immunology
- Pathology
- Neuroscience
Background:
- Experimental cerebral malaria (ECM) in C57BL/6 mice is driven by T cell-mediated damage.
- The role of inflammatory monocytes in ECM pathogenesis is not well understood, though neutrophils are implicated.
Purpose of the Study:
- To investigate the specific roles of Ly6C(hi) inflammatory monocytes and neutrophils in the development of experimental cerebral malaria (ECM).
Main Methods:
- Utilized specific monoclonal antibodies (mAbs) to deplete Ly6C(hi) inflammatory monocytes (anti-CCR2), Ly6G+ neutrophils (anti-Ly6G), or both (anti-Gr1) in Ovalbumin-transgenic Plasmodium berghei ANKA (PbTg)-infected mice.
- Assessed ECM development, IFNγ levels, and T cell responses in the periphery and brain.
Main Results:
- Depletion of inflammatory monocytes (anti-CCR2) or both cell types (anti-Gr1), but not neutrophils alone (anti-Ly6G), prevented ECM.
- Ly6C(hi) monocyte depletion reduced brain IFNγ and IFNγ+CD8+ T effector cells.
- Anti-CCR2 mAb did not affect peripheral T cell responses, while anti-Gr1 mAb diminished T cell frequencies and CTL responses.
Conclusions:
- Specific depletion of Ly6C(hi) inflammatory monocytes attenuates brain inflammation and CNS immune cell infiltration, thereby preventing ECM.
- Ly6C+ monocytes play a substantial role in the inflammatory processes underlying ECM.
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