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miR-155 Modifies Inflammation, Endothelial Activation and Blood-Brain Barrier Dysfunction in Cerebral Malaria
Kevin Richard Barker1,2, Ziyue Lu2, Hani Kim2
1Department of Laboratory Medicine and Pathobiology, University of Toronto, ON, Canada.
Abstract:
miR-155 has been shown to participate in host response to infection and neuro-inflammation via negative regulation of blood-brain-barrier (BBB) integrity and T cell function. We hypothesized that miR-155 may contribute to the pathogenesis of cerebral malaria (CM). To test this hypothesis, we used a genetic approach to modulate miR-155 expression in an experimental model of cerebral malaria (ECM). In addition, an engineered endothelialized microvessel system and serum samples from Ugandan children with CM were used to examine an anti-miR-155 as a potential adjunctive therapeutic for severe malaria. Despite higher parasitemia, survival was significantly improved in miR-155-/- mice vs. wild-type littermate mice in ECM. Improved survival was associated with preservation of BBB integrity and reduced endothelial activation, despite increased levels of pro-inflammatory cytokines. Pre-treatment with antagomir-155 reduced vascular leak induced by human CM sera in an ex vivo endothelial microvessel model. These data provide evidence supporting a mechanistic role for miR-155 in host response to malaria via regulation of endothelial activation, microvascular leak and BBB dysfunction in CM.
Insights
MicroRNA-155 (miR-155) exacerbates cerebral malaria by disrupting blood-brain barrier integrity. Inhibiting miR-155 improved survival and protected the brain in experimental models, suggesting therapeutic potential.
Area of Science:
- Neuroscience
- Immunology
- Infectious Diseases
Background:
- MicroRNA-155 (miR-155) plays a role in neuro-inflammation and host responses to infection.
- Its involvement in the pathogenesis of cerebral malaria (CM) is not fully understood.
Purpose of the Study:
- To investigate the role of miR-155 in experimental cerebral malaria (ECM).
- To evaluate anti-miR-155 as a potential adjunctive therapy for severe malaria.
Main Methods:
- Genetic modulation of miR-155 expression in a mouse model of ECM.
- Utilized an engineered endothelialized microvessel system and human CM serum samples.
- Assessed blood-brain barrier (BBB) integrity, endothelial activation, and survival rates.
Main Results:
- miR-155 knockout mice showed improved survival in ECM despite higher parasitemia.
- BBB integrity was preserved, and endothelial activation was reduced in miR-155 deficient mice.
- Antagomir-155 pre-treatment reduced serum-induced vascular leak in an ex vivo model.
Conclusions:
- miR-155 contributes mechanistically to CM pathogenesis by regulating endothelial activation and BBB dysfunction.
- Targeting miR-155 represents a potential therapeutic strategy for severe malaria.
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