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Updated: May 2, 2026

Isolation and Analysis of Brain-sequestered Leukocytes from Plasmodium berghei ANKA-infected Mice
Published on: January 2, 2013
Production, fate and pathogenicity of plasma microparticles in murine cerebral malaria
Fatima El-Assaad1, Julie Wheway1, Nicholas H Hunt2
1Vascular Immunology Unit, Department of Pathology, Sydney Medical School, The University of Sydney, Sydney, Australia.
Abstract:
In patients with cerebral malaria (CM), higher levels of cell-specific microparticles (MP) correlate with the presence of neurological symptoms. MP are submicron plasma membrane-derived vesicles that express antigens of their cell of origin and phosphatidylserine (PS) on their surface, facilitating their role in coagulation, inflammation and cell adhesion. In this study, the in vivo production, fate and pathogenicity of cell-specific MP during Plasmodium berghei infection of mice were evaluated. Using annexin V, a PS ligand, and flow cytometry, analysis of platelet-free plasma from infected mice with cerebral involvement showed a peak of MP levels at the time of the neurological onset. Phenotypic analyses showed that MP from infected mice were predominantly of platelet, endothelial and erythrocytic origins. To determine the in vivo fate of MP, we adoptively transferred fluorescently labelled MP from mice with CM into healthy or infected recipient mice. MP were quickly cleared following intravenous injection, but microscopic examination revealed arrested MP lining the endothelium of brain vessels of infected, but not healthy, recipient mice. To determine the pathogenicity of MP, we transferred MP from activated endothelial cells into healthy recipient mice and this induced CM-like brain and lung pathology. This study supports a pathogenic role for MP in the aggravation of the neurological lesion and suggests a causal relationship between MP and the development of CM.
Insights
Microparticles (MPs), vesicles from cells, are linked to cerebral malaria (CM) neurological symptoms. This study shows MPs contribute to CM pathology and brain lesions in mice.
Area of Science:
- Immunology
- Pathology
- Cell Biology
Background:
- Cell-specific microparticles (MPs) are elevated in cerebral malaria (CM) patients with neurological symptoms.
- MPs are vesicles expressing cell antigens and phosphatidylserine (PS), involved in coagulation and inflammation.
Purpose of the Study:
- To investigate the in vivo production, fate, and pathogenicity of cell-specific MPs in Plasmodium berghei-infected mice.
- To elucidate the role of MPs in the development of CM.
Main Methods:
- Flow cytometry and annexin V staining to analyze MP levels in infected mice.
- Adoptive transfer of fluorescently labeled MPs to track their in vivo fate.
- Induction of CM-like pathology by transferring activated endothelial cell-derived MPs.
Main Results:
- MP levels peaked during neurological onset in infected mice, with platelet, endothelial, and erythrocytic origins.
- Transferred MPs arrested in brain vessels of infected recipients but were cleared in healthy ones.
- Transfer of endothelial MPs induced CM-like brain and lung pathology.
Conclusions:
- MPs play a pathogenic role in exacerbating neurological lesions in CM.
- A causal relationship between MPs and CM development is suggested.
- MPs are potential therapeutic targets for CM.
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