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Primary Microglia Isolation from Mixed Glial Cell Cultures of Neonatal Rat Brain Tissue
Published on: August 15, 2012
Putative mGluR4 positive allosteric modulators activate Gi-independent anti-inflammatory mechanisms in microglia
Gelareh Abulwerdi1, Bogdan A Stoica1, David J Loane1
1Department of Anesthesiology and Shock, Trauma and Anesthesiology Research (STAR) Center, University of Maryland School of Medicine, Baltimore, MD, USA.
Abstract:
Chronic dysregulated microglial activation may lead to persistent inflammation and progressive neurodegeneration. A previous study reported that ADX88178, a putative metabotropic glutamate receptor 4 (mGluR4) positive allosteric modulator (PAM), exerts anti-inflammatory effects in microglia by activating mGluR4. We employed in vitro models of immortalized microglia cell lines and primary microglia to elucidate the molecular mechanisms responsible for the regulation of inflammatory pathways by ADX88178 and other mGluR4 PAMs. ADX88178 downregulated lipopolysaccharide (LPS)-induced expression of pro-inflammatory mediators, including TNF-α, IL-1β, CCL-2, IL-6, NOS2, and miR-155, as well as NO levels, in BV2 cells and primary microglia. Other mGluR4 modulators had divergent activities; VU0361737 (PAM) showed anti-inflammatory effects, whereas the orthosteric group III agonist, L-AP4, and VU0155041 (PAM) displayed no anti-inflammatory actions. In contrast to the earlier report, ADX88178 anti-inflammatory effects appeared to be mGluR4-independent as mGluR4 expression in our in vitro models was very low and its actions were not altered by pharmacological or molecular inhibition of mGluR4. Moreover, we showed that ADX88178 activated Gi-independent, alternative signaling pathways as indicated by the absence of pertussis toxin-mediated inhibition and by increased phosphorylation of cAMP-response element binding protein (CREB), an inhibitor of the NFkB pro-inflammatory pathway. ADX88178 also attenuated NFkB activation by reducing the degradation of IkB and the associated translocation of NFkB-p65 to the nucleus. ADX88178 did not exert its anti-inflammatory effects through adenosine receptors, reported as mGluR4 heteromerization partners. Thus, our results indicate that in microglia, putative mGluR4 PAMs activate mGluR4/Gi-independent mechanisms to attenuate pro-inflammatory pathways.
Insights
ADX88178 reduces microglial inflammation independently of mGluR4, activating alternative pathways to inhibit pro-inflammatory signaling. This finding offers new therapeutic targets for neurodegenerative diseases.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Chronic microglial activation drives neuroinflammation and neurodegeneration.
- Metabotropic glutamate receptor 4 (mGluR4) positive allosteric modulators (PAMs) were investigated for anti-inflammatory effects in microglia.
- Previous studies suggested ADX88178 exerts anti-inflammatory effects via mGluR4 activation.
Purpose of the Study:
- To elucidate the molecular mechanisms of ADX88178's anti-inflammatory effects in microglia.
- To investigate the role of mGluR4 in mediating ADX88178's actions.
- To identify alternative signaling pathways involved in ADX88178's anti-inflammatory activity.
Main Methods:
- Utilized in vitro models including immortalized microglia cell lines (BV2) and primary microglia.
- Assessed the expression of pro-inflammatory mediators (TNF-α, IL-1β, CCL-2, IL-6, NOS2, miR-155) and NO levels.
- Investigated the involvement of mGluR4, Gi signaling, CREB phosphorylation, and NFkB pathway activation.
- Tested other mGluR4 modulators (VU0361737, L-AP4, VU0155041) and adenosine receptors.
Main Results:
- ADX88178 downregulated LPS-induced pro-inflammatory mediators and NO levels.
- ADX88178's anti-inflammatory effects were mGluR4-independent, occurring despite low mGluR4 expression and unaffected by mGluR4 inhibition.
- ADX88178 activated Gi-independent pathways, increased CREB phosphorylation, and attenuated NFkB activation by inhibiting IkB degradation and NFkB-p65 nuclear translocation.
- Other mGluR4 modulators showed varied effects; VU0361737 was anti-inflammatory, while L-AP4 and VU0155041 were not.
Conclusions:
- ADX88178 exerts anti-inflammatory effects in microglia through mGluR4/Gi-independent mechanisms.
- The drug targets alternative signaling pathways, including CREB activation and NFkB inhibition.
- These findings suggest novel therapeutic strategies for neuroinflammation by targeting these alternative pathways.
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