Related Experiment Video
Updated: Aug 31, 2026

Isolation of Primary Murine Brain Microvascular Endothelial Cells
Published on: November 14, 2014
Endothelin-1 Mediates Brain Microvascular Dysfunction Leading to Long-Term Cognitive Impairment in a Model of
Brandi D Freeman1, Yuri C Martins1, Oscar B Akide-Ndunge1
1Department of Pathology, Albert Einstein College of Medicine, Bronx, New York, United States of America.
Abstract:
Plasmodium falciparum infection causes a wide spectrum of diseases, including cerebral malaria, a potentially life-threatening encephalopathy. Vasculopathy is thought to contribute to cerebral malaria pathogenesis. The vasoactive compound endothelin-1, a key participant in many inflammatory processes, likely mediates vascular and cognitive dysfunctions in cerebral malaria. We previously demonstrated that C57BL6 mice infected with P. berghei ANKA, our fatal experimental cerebral malaria model, sustained memory loss. Herein, we demonstrate that an endothelin type A receptor (ETA) antagonist prevented experimental cerebral malaria-induced neurocognitive impairments and improved survival. ETA antagonism prevented blood-brain barrier disruption and cerebral vasoconstriction during experimental cerebral malaria, and reduced brain endothelial activation, diminishing brain microvascular congestion. Furthermore, exogenous endothelin-1 administration to P. berghei NK65-infected mice, a model generally regarded as a non-cerebral malaria negative control for P. berghei ANKA infection, led to experimental cerebral malaria-like memory deficits. Our data indicate that endothelin-1 is critical in the development of cerebrovascular and cognitive impairments with experimental cerebral malaria. This vasoactive peptide may thus serve as a potential target for adjunctive therapy in the management of cerebral malaria.
Insights
Endothelin-1 plays a critical role in experimental cerebral malaria, causing memory loss and brain issues. Blocking its receptor (ETA) improved survival and prevented cognitive deficits in mice.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Plasmodium falciparum infection causes cerebral malaria, a severe encephalopathy linked to vasculopathy.
- Endothelin-1, a vasoactive peptide, is implicated in vascular and cognitive dysfunction during cerebral malaria.
Purpose of the Study:
- To investigate the role of endothelin-1 in experimental cerebral malaria (ECM)-induced neurocognitive impairments.
- To evaluate the therapeutic potential of endothelin type A receptor (ETA) antagonism in ECM.
Main Methods:
- Utilized a P. berghei ANKA mouse model for experimental cerebral malaria.
- Administered an ETA antagonist to assess its effects on neurocognitive function and survival.
- Administered exogenous endothelin-1 to P. berghei NK65-infected mice.
Main Results:
- ETA antagonism prevented ECM-induced memory loss and improved survival in mice.
- ETA antagonism inhibited blood-brain barrier disruption, cerebral vasoconstriction, and brain microvascular congestion.
- Exogenous endothelin-1 induced ECM-like memory deficits in a non-cerebral malaria model.
Conclusions:
- Endothelin-1 is crucial for cerebrovascular and cognitive impairments in experimental cerebral malaria.
- ETA antagonism represents a potential therapeutic strategy for managing cerebral malaria complications.
More Related Videos
09:04In Vivo Tracking of Edema Development and Microvascular Pathology in a Model of Experimental Cerebral Malaria Using Magnetic Resonance Imaging
Published on: June 8, 2017
04:29Author Spotlight: Modeling Vascular Contributions to Alzheimer's Disease in Transgenic Mice
Published on: May 17, 2024