ArticleFluids and barriers of the CNS2021
Microglia activated by microbial neuraminidase contributes to ependymal cell death.
Article in Fluids and barriers of the CNS, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed, 14 citations in OpenAlex.
- IFN-γ signaling links ventriculomegaly to choroid plexus and ependyma dysfunction following maternal immune activation.Journal of neuroinflammation · 2025Article
- Association between microenvironment-related genes and prognosis of primary central nervous system lymphoma.EJHaem · 2024Article
- Ependymal cells: roles in central nervous system infections and therapeutic application.Journal of neuroinflammation · 2024Review
- Multiciliated ependymal cells: an update on biology and pathology in the adult brain.Acta neuropathologica · 2024Review
- Ventricular-subventricular zone stem cell niche adaptations in a mouse model of post-infectious hydrocephalus.Frontiers in neuroscience · 2024Article
- Sustained ICP Elevation Is a Driver of Spatial Memory Deficits After Intraventricular Hemorrhage and Leads to Activation of Distinct Microglial Signaling Pathways.Translational stroke research · 2023Article
- Roles of Ependymal Cells in the Physiology and Pathology of the Central Nervous System.Aging and disease · 2023Review
- Therapeutic strategies to recover ependymal barrier after inflammatory damage: relevance for recovering neurogenesis during development.Frontiers in neuroscience · 2023Review
- Article
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Authors and funding
4 authors at 1 institution in 1 country.
Funding
Abstract
The administration of microbial neuraminidase into the brain ventricular cavities of rodents represents a model of acute aseptic neuroinflammation. Ependymal cell death and hydrocephalus are unique features of this model. Here we demonstrate that activated microglia participates in ependymal cell death. Co-cultures of pure microglia with ependymal cells (both obtained from rats) were performed, and neuraminidase or lipopolysaccharide were used to activate microglia. Ependymal cell viability was unaltered in the absence of microglia or inflammatory stimulus (neuraminidase or lipopolysaccharide). The constitutive expression by ependymal cells of receptors for cytokines released by activated microglia, such as IL-1β, was demonstrated by qPCR. Besides, neuraminidase induced the overexpression of both receptors in ventricular wall explants. Finally, ependymal viability was evaluated in the presence of functional blocking antibodies against IL-1β and TNFα. In the co-culture setting, an IL-1β blocking antibody prevented ependymal cell death, while TNFα antibody did not. These results suggest that activated microglia are involved in the ependymal damage that occurs after the administration of neuraminidase in the ventricular cavities, and points to IL-1β as possible mediator of such effect. The relevance of these results lies in the fact that brain infections caused by neuraminidase-bearing pathogens are frequently associated to ependymal death and hydrocephalus.
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