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Translocator protein (18 kDa) (TSPO) is expressed in reactive retinal microglia and modulates microglial inflammation
Marcus Karlstetter, Caroline Nothdurfter, Alexander Aslanidis
1Department of Ophthalmology, University of Cologne, D-50931 Cologne, Germany. rainer.rupprecht@medbo.de.
Background:
The translocator protein (18 kDa) (TSPO) is a mitochondrial protein expressed on reactive glial cells and a biomarker for gliosis in the brain. TSPO ligands have been shown to reduce neuroinflammation in several mouse models of neurodegeneration. Here, we analyzed TSPO expression in mouse and human retinal microglia and studied the effects of the TSPO ligand XBD173 on microglial functions.
Methods:
TSPO protein analyses were performed in retinoschisin-deficient mouse retinas and human retinas. Lipopolysaccharide (LPS)-challenged BV-2 microglial cells were treated with XBD173 and TSPO shRNAs in vitro and pro-inflammatory markers were determined by qRT-PCR. The migration potential of microglia was determined with wound healing assays and the proliferation was studied with Fluorescence Activated Cell Sorting (FACS) analysis. Microglial neurotoxicity was estimated by nitrite measurement and quantification of caspase 3/7 levels in 661 W photoreceptors cultured in the presence of microglia-conditioned medium. The effects of XBD173 on filopodia formation and phagocytosis were analyzed in BV-2 cells and human induced pluripotent stem (iPS) cell-derived microglia (iPSdM). The morphology of microglia was quantified in mouse retinal explants treated with XBD173.
Results:
TSPO was strongly up-regulated in microglial cells of the dystrophic mouse retina and also co-localized with microglia in human retinas. Constitutive TSPO expression was high in the early postnatal Day 3 mouse retina and declined to low levels in the adult tissue. TSPO mRNA and protein were also strongly induced in LPS-challenged BV-2 microglia while the TSPO ligand XBD173 efficiently suppressed transcription of the pro-inflammatory marker genes chemokine (C-C motif) ligand 2 (CCL2), interleukin 6 (IL6) and inducible nitric oxide (NO)-synthase (iNOS). Moreover, treatment with XBD173 significantly reduced the migratory capacity and proliferation of microglia, their level of NO secretion and their neurotoxic activity on 661 W photoreceptor cells. Furthermore, XBD173 treatment of murine and human microglial cells promoted the formation of filopodia and increased their phagocytic capacity to ingest latex beads or photoreceptor debris. Finally, treatment with XBD173 reversed the amoeboid alerted phenotype of microglial cells in explanted organotypic mouse retinal cultures after challenge with LPS.
Conclusions:
These findings suggest that TSPO is highly expressed in reactive retinal microglia and a promising target to control microglial reactivity during retinal degeneration.
Insights
Translocator protein (TSPO) is upregulated in reactive retinal microglia. The TSPO ligand XBD173 reduces microglial pro-inflammatory responses and neurotoxicity, suggesting TSPO as a therapeutic target for retinal degeneration.
Area of Science:
- Neuroscience
- Ophthalmology
- Immunology
Background:
- Translocator protein (18 kDa) (TSPO) is a mitochondrial protein and biomarker for gliosis.
- TSPO ligands have demonstrated neuroinflammatory reduction in neurodegenerative models.
- This study investigates TSPO expression in retinal microglia and the effects of XBD173.
Purpose of the Study:
- To analyze TSPO expression in mouse and human retinal microglia.
- To evaluate the impact of the TSPO ligand XBD173 on microglial functions and reactivity.
- To explore TSPO as a potential therapeutic target for retinal degeneration.
Main Methods:
- TSPO protein analysis in mouse and human retinas.
- In vitro studies using LPS-challenged BV-2 microglial cells treated with XBD173.
- Assays for microglial migration, proliferation, neurotoxicity, filopodia formation, and phagocytosis.
Main Results:
- TSPO is upregulated in reactive retinal microglia in mouse and human samples.
- XBD173 suppressed pro-inflammatory markers (CCL2, IL6, iNOS) in microglia.
- XBD173 reduced microglial migration, proliferation, NO secretion, and neurotoxicity, while enhancing phagocytosis.
Conclusions:
- TSPO is highly expressed in reactive retinal microglia.
- Targeting TSPO with ligands like XBD173 may control microglial reactivity.
- TSPO represents a promising therapeutic target for managing retinal degeneration.
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