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S1P is associated with protection in human and experimental cerebral malaria
Constance Am Finney1, Cheryl A Hawkes, Dylan C Kain
1SA Rotman Laboratories, McLaughlin-Rotman Centre for Global Health, University Health Network and University of Toronto, Canada Faculty of Medicine, University of Toronto, Canada.
Abstract:
Cerebral malaria (CM) is associated with excessive inflammatory responses and endothelial activation. Sphingosine 1-phosphate (S1P) is a signaling sphingolipid implicated in regulating vascular integrity, inflammation and T-cell migration. We hypothesized that altered S1P signaling during malaria contributes to endothelial activation and inflammation, and show that plasma S1P levels were decreased in Ugandan children with CM compared with children with uncomplicated malaria. Using the Plasmodium berghei ANKA (PbA) model of experimental CM (ECM), we demonstrate that humanized S1P lyase (hS1PL)(-/-) mice with reduced S1P lyase activity (resulting in increased bio-available S1P) had improved survival compared with wild-type littermates. Prophylactic and therapeutic treatment of infected mice with compounds that modulate the S1P pathway and are in human trials for other conditions (FTY720 or LX2931) significantly improved survival in ECM. FTY720 treatment improved vascular integrity as indicated by reduced levels of soluble intercellular adhesion molecule (sICAM), increased angiopoietin 1 (Ang1) (regulator of endothelial quiescence) levels, and decreased Evans blue dye leakage into brain parenchyma. Furthermore, treatment with FTY720 decreased IFNγ levels in plasma as well as CD4(+) and CD8(+) T-cell infiltration into the brain. Finally, when administered during infection in combination with artesunate, FTY720 treatment resulted in increased survival to ECM. These findings implicate dysregulation of the S1P pathway in the pathogenesis of human and murine CM and suggest a novel therapeutic strategy to improve clinical outcome in severe malaria.
Insights
Decreased sphingosine 1-phosphate (S1P) signaling contributes to severe malaria. Modulating the S1P pathway with FTY720 improved survival and reduced brain inflammation in experimental cerebral malaria (ECM).
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Cerebral malaria (CM) involves severe inflammation and endothelial damage.
- Sphingosine 1-phosphate (S1P) regulates vascular integrity, inflammation, and T-cell movement.
Purpose of the Study:
- To investigate the role of S1P pathway dysregulation in CM pathogenesis.
- To evaluate S1P-modulating drugs as potential therapeutics for CM.
Main Methods:
- Measured plasma S1P levels in children with CM versus uncomplicated malaria.
- Utilized the Plasmodium berghei ANKA (PbA) mouse model for experimental CM (ECM).
- Administered S1P pathway modulators (FTY720, LX2931) and assessed survival, vascular integrity markers (sICAM, Ang1), and immune cell infiltration.
Main Results:
- Children with CM had lower plasma S1P levels.
- Mice with genetic S1P lyase deficiency showed improved ECM survival.
- FTY720 and LX2931 treatments significantly increased survival in ECM.
- FTY720 improved vascular integrity, reduced brain inflammation (IFNγ, T-cells), and enhanced survival when combined with artesunate.
Conclusions:
- Altered S1P signaling is implicated in CM pathogenesis.
- S1P pathway modulation represents a promising therapeutic strategy for severe malaria.
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