Related Experiment Video
Updated: Aug 29, 2026

Adipose-Derived Mesenchymal Stromal Cells Co-Cultured with Primary Mixed Glia to Reduce Prion-Induced Inflammation
Published on: August 11, 2023
Neurons and astrocytes respond to prion infection by inducing microglia recruitment
Mathieu Marella1, Joëlle Chabry
1Institut de Pharmacologie Moléculaire et Cellulaire, Unité Mixte de Recherche 6097, Centre National de la Recherche Scientifique 660, 06560 Valbonne, France.
Abstract:
The accumulation and activation of microglial cells at sites of amyloid prion deposits or plaques have been documented extensively. Here, we investigate the in vivo recruitment of microglial cells soon after intraocular injection of scrapie-infected cell homogenate (hgtsc+) using immunohistochemistry on retinal sections. A population of CD11b/CD45-positive microglia was specifically detected within the ganglion and internal plexiform retinal cell layers by 2 d after intravitreal injection of hgtsc+. Whereas no chemotactism properties were ascribed to hgtsc+ alone, a massive migration of microglial cells was observed by incubating primary cultured neurons and astrocytes with hgtsc+ in a time- and concentration-dependent manner. hgtsc+ triggered the recruitment of microglial cells by interacting with both neurons and astrocytes by upregulation of the expression levels of a broad spectrum of neuronal and glial chemokines. We show that, in vitro and in vivo, the microglia migration is at least partly under the control of chemokine receptor-5 (CCR-5) activation, because highly specific CCR-5 antagonist TAK-779 significantly reduced the migration rate of microglia. Activated microglia recruited in the vicinity of prion may, in turn, cause neuronal cell damage by inducing apoptosis. These findings provide insight into the understanding of the cell-cell communication that takes place during the development of prion diseases.
Insights
Scrapie-infected cell homogenate (hgtsc+) triggers microglial cell recruitment in the retina by activating neurons and astrocytes. This migration, partly mediated by chemokine receptor-5 (CCR-5), may contribute to prion disease-induced neuronal damage.
Area of Science:
- Neuroscience
- Immunology
- Prion Disease Research
Background:
- Microglial cells accumulate at amyloid prion deposits.
- The early events of microglial recruitment in prion diseases are not fully understood.
Purpose of the Study:
- To investigate the in vivo recruitment of microglial cells following intraocular injection of scrapie-infected cell homogenate (hgtsc+).
- To elucidate the mechanisms underlying microglial cell migration in response to prion infection.
Main Methods:
- Immunohistochemistry on retinal sections after intravitreal injection of hgtsc+.
- In vitro studies using primary cultured neurons and astrocytes incubated with hgtsc+.
- Assessment of chemokine expression and the role of chemokine receptor-5 (CCR-5) using antagonist TAK-779.
Main Results:
- CD11b/CD45-positive microglia were detected in retinal layers within 2 days of hgtsc+ injection.
- hgtsc+ induced massive microglial migration by upregulating neuronal and glial chemokines through interaction with neurons and astrocytes.
- Microglia migration was significantly reduced by a CCR-5 antagonist, indicating its partial control.
Conclusions:
- hgtsc+ actively recruits microglial cells in the retina via neuronal and glial interactions.
- Chemokine receptor-5 (CCR-5) plays a role in prion-induced microglial migration.
- Activated microglia may contribute to neuronal apoptosis and damage in prion diseases.
Related Concept Videos
Encephalitis ll: Pathophysiology
Nervous Tissue: Glial Cells
The CNS glial cell includes the astrocytes, the oligodendrocytes, the microglia, and the ependymal cells.
Astrocytes are star-shaped glial cells that interact...
Glial Cells

