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Updated: Jan 19, 2026

On-Chip Endothelial Inflammatory Phenotyping
Published on: July 21, 2012
Microglial Pro-Inflammatory and Anti-Inflammatory Phenotypes Are Modulated by Translocator Protein Activation
Eleonora Da Pozzo1, Chiara Tremolanti2, Barbara Costa3
1Department of Pharmacy, University of Pisa, 56126 Pisa, Italy. eleonora.dapozzo@unipi.it.
Abstract:
A key role of the mitochondrial Translocator Protein 18 KDa (TSPO) in neuroinflammation has been recently proposed. However, little is known about TSPO-activated pathways underlying the modulation of reactive microglia. In the present work, the TSPO activation was explored in an in vitro human primary microglia model (immortalized C20 cells) under inflammatory stimulus. Two different approaches were used with the aim to (i) pharmacologically amplify or (ii) silence, by the lentiviral short hairpin RNA, the TSPO physiological function. In the TSPO pharmacological stimulation model, the synthetic steroidogenic selective ligand XBD-173 attenuated the activation of microglia. Indeed, it reduces and increases the release of pro-inflammatory and anti-inflammatory cytokines, respectively. Such ligand-induced effects were abolished when C20 cells were treated with the steroidogenesis inhibitor aminoglutethimide. This suggests a role for neurosteroids in modulating the interleukin production. The highly steroidogenic ligand XBD-173 attenuated the neuroinflammatory response more effectively than the poorly steroidogenic ones, which suggests that the observed modulation on the cytokine release may be influenced by the levels of produced neurosteroids. In the TSPO silencing model, the reduction of TSPO caused a more inflamed phenotype with respect to scrambled cells. Similarly, during the inflammatory response, the TSPO silencing increased and reduced the release of pro-inflammatory and anti-inflammatory cytokines, respectively. In conclusion, the obtained results are in favor of a homeostatic role for TSPO in the context of dynamic balance between anti-inflammatory and pro-inflammatory mediators in the human microglia-mediated inflammatory response. Interestingly, our preliminary results propose that the TSPO expression could be stimulated by NF-κB during activation of the inflammatory response.
Insights
Translocator Protein 18 KDa (TSPO) plays a homeostatic role in neuroinflammation by balancing pro- and anti-inflammatory cytokines in human microglia. Modulating TSPO impacts microglial activation and inflammatory responses.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- The role of mitochondrial Translocator Protein 18 KDa (TSPO) in neuroinflammation is emerging.
- Understanding TSPO-activated pathways in reactive microglia modulation is limited.
Purpose of the Study:
- To investigate the role of TSPO in human primary microglia under inflammatory conditions.
- To explore TSPO's function via pharmacological amplification and gene silencing.
Main Methods:
- Utilized an in vitro human primary microglia model (C20 cells).
- Employed pharmacological stimulation with TSPO ligand XBD-173 and TSPO silencing via lentiviral shRNA.
- Assessed cytokine release (pro-inflammatory and anti-inflammatory) and microglial activation.
Main Results:
- Pharmacological TSPO activation with XBD-173 attenuated microglial activation, reducing pro-inflammatory and increasing anti-inflammatory cytokines.
- TSPO silencing exacerbated the inflammatory phenotype, increasing pro-inflammatory and decreasing anti-inflammatory cytokines.
- Ligand-induced effects were dependent on steroidogenesis, suggesting a role for neurosteroids.
Conclusions:
- TSPO exhibits a homeostatic role in human microglia, balancing inflammatory mediators.
- Neurosteroids modulate interleukin production via TSPO.
- Preliminary data suggest NF-κB may stimulate TSPO expression during inflammation.
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