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Updated: Dec 11, 2025

Isolation and Analysis of Brain-sequestered Leukocytes from Plasmodium berghei ANKA-infected Mice
Published on: January 2, 2013
Mesenchymal stromal cells protect against vascular damage and depression-like behavior in mice surviving cerebral
Maiara N Lima1, Helena A Oliveira1, Paula M Fagundes1
1Laboratory of Immunopharmacology, Oswaldo Cruz Institute, Oswaldo Cruz Foundation, Fiocruz, Av. Brasil, 4365, Pavilhão 108, sala 45, Manguinhos, Rio de Janeiro, RJ, 21040-360, Brazil.
Background:
Malaria is one of the most critical global infectious diseases. Severe systemic inflammatory diseases, such as cerebral malaria, lead to the development of cognitive and behavioral alterations, such as learning disabilities and loss of memory capacity, as well as increased anxiety and depression. The consequences are profound and usually contribute to reduce the patient's quality of life. There are no therapies to treat the neurological sequelae of cerebral malaria. Mesenchymal stromal cells (MSCs) may be an alternative, since they have been used as therapy for neurodegenerative diseases and traumatic lesions of the central nervous system. So far, no study has investigated the effects of MSC therapy on the blood-brain barrier, leukocyte rolling and adherence in the brain, and depression like-behavior in experimental cerebral malaria.
Methods:
Male C57BL/6 mice were infected with Plasmodium berghei ANKA (PbA, 1 × 106 PbA-parasitized red blood cells, intraperitoneally). At day 6, PbA-infected animals received chloroquine (25 mg/kg orally for seven consecutive days) as the antimalarial treatment and were then randomized to receive MSCs (1 × 105 cells in 0.05 ml of saline/mouse) or saline (0.05 ml) intravenously. Parasitemia, clinical score, and survival rate were analyzed throughout the experiments. Evans blue assay was performed at 6, 7, and 15 days post-infection (dpi). Behavioral tests were performed at 5 and 15 dpi. Intravital microscopy experiments and brain-derived neurotrophic factor (BDNF) protein expression analyses were performed at 7 dpi, whereas inflammatory mediators were measured at 15 dpi. In vitro, endothelial cells were used to evaluate the effects of conditioned media derived from MSCs (CMMSC) on cell viability by lactate dehydrogenase (LDH) release.
Results:
PbA-infected mice presented increased parasitemia, adherent leukocytes, blood-brain barrier permeability, and reduced BDNF protein levels, as well as depression-like behavior. MSCs mitigated behavioral alterations, restored BDNF and transforming growth factor (TGF)-β protein levels, and reduced blood-brain barrier dysfunction and leukocyte adhesion in the brain microvasculature. In a cultured endothelial cell line stimulated with heme, CMMSC reduced LDH release, suggesting a paracrine mechanism of action.
Conclusion:
A single dose of MSCs as adjuvant therapy protected against vascular damage and improved depression-like behavior in mice that survived experimental cerebral malaria.
Insights
Mesenchymal stromal cells (MSCs) offer a promising therapy for neurological damage caused by cerebral malaria. This study shows MSCs protect against brain vascular damage and improve depression-like behavior in surviving mice.
Area of Science:
- Neuroscience
- Immunology
- Infectious Diseases
Background:
- Cerebral malaria causes severe neurological deficits, including cognitive impairment and behavioral changes, significantly reducing quality of life.
- Current treatments do not address the neurological consequences of cerebral malaria.
- Mesenchymal stromal cells (MSCs) show potential for treating central nervous system disorders.
Purpose of the Study:
- To investigate the therapeutic effects of MSCs on the blood-brain barrier, leukocyte adhesion, and depression-like behavior in experimental cerebral malaria.
- To explore the underlying mechanisms of MSC action in cerebral malaria.
Main Methods:
- Mice infected with Plasmodium berghei ANKA were treated with chloroquine and subsequently received MSCs or saline.
- Evaluated parasitemia, clinical scores, survival rates, blood-brain barrier permeability, leukocyte adhesion, and depression-like behavior.
- Assessed brain-derived neurotrophic factor (BDNF) and inflammatory mediator levels, and in vitro endothelial cell responses to MSC-conditioned media.
Main Results:
- PbA-infected mice exhibited increased parasitemia, leukocyte adhesion, blood-brain barrier permeability, and depression-like behavior, with reduced BDNF levels.
- MSC treatment mitigated behavioral deficits, restored BDNF and TGF-β levels, and reduced blood-brain barrier dysfunction and leukocyte adhesion.
- In vitro studies suggested a paracrine mechanism for MSCs' protective effects.
Conclusions:
- A single dose of MSCs as adjuvant therapy effectively protected against vascular damage in experimental cerebral malaria.
- MSC treatment significantly improved depression-like behavior in mice that survived cerebral malaria.
- MSCs represent a potential therapeutic strategy for managing the neurological sequelae of cerebral malaria.

