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Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Microglial pro-inflammatory mechanisms induced by monomeric C-reactive protein are counteracted by soluble epoxide
Clara Bartra1, Kristijan Vuraić2, Yi Yuan2
1Department of Neuroscience and Experimental Therapeutics, Institute of Biomedical Research of Barcelona (IIBB), CSIC, 08036 Barcelona, Spain; PhD Program in Biotechnology, Facultat de Farmàcia i Ciències de l'Alimentació, Universitat de Barcelona, 08034 Barcelona, Spain.
Abstract:
Monomeric C-reactive protein (mCRP) is a pro-inflammatory molecule generated by the dissociation of native CRP. Clinical and experimental studies suggest that mCRP deposition in the brain induces Alzheimer's disease (AD) pathology and cognitive loss. Pathological neuroinflammation is increasingly suggested as relevant in AD. Innovative therapies against neuroinflammation are desperately needed, and inhibitors of the enzyme soluble epoxide hydrolase (sEH) are a promising new generation of anti-inflammatory drugs. Mouse primary microglia and BV2 cell line cultures were exposed to mCRP to analyze its pro-inflammatory mechanisms. sEH inhibitors, both newly synthesized UB-SCG-55 and UB-SCG-65, and the reference agent TPPU, were tested for their anti-inflammatory action against mCRP. Phenotypic changes were analyzed through cell imaging techniques, as well as molecular analysis of inflammatory mediators and gene activation pathways. Results show that mCRP triggers a pro-inflammatory response through three main inflammatory pathways: iNOS, NLRP3, and COX-2, followed by increased cytokine generation. Polarization of microglia toward a M1-like phenotype was confirmed by morphological analysis. Also, mCRP can bind to and cross the cell membrane, providing further insight into its mechanisms of action. sEH inhibitors were effective against mCRP induction of a reactive microglial phenotype. The first-line compound UB-SCG-55 emerged as the most potent anti-inflammatory against mCRP injury. Therefore, the direct activation of microglia by mCRP provides evidence of its role in triggering and exacerbating neurodegenerative diseases with a neuroinflammatory component, such as AD. Furthermore, the protection given by inhibitors of sEH confirms its potential as innovative drugs against deleterious effects of neuroinflammation.
Insights
Monomeric C-reactive protein (mCRP) drives Alzheimer's disease pathology by activating microglia. Soluble epoxide hydrolase (sEH) inhibitors, particularly UB-SCG-55, effectively reduce this mCRP-induced neuroinflammation, offering a potential therapeutic strategy.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Monomeric C-reactive protein (mCRP) is implicated in Alzheimer's disease (AD) pathology and cognitive decline.
- Neuroinflammation is a key factor in AD pathogenesis, necessitating novel anti-inflammatory therapies.
- Soluble epoxide hydrolase (sEH) inhibitors represent a promising class of anti-inflammatory agents.
Purpose of the Study:
- To investigate the pro-inflammatory mechanisms of mCRP in microglia.
- To evaluate the efficacy of sEH inhibitors in mitigating mCRP-induced neuroinflammation.
- To explore the potential of sEH inhibitors as therapeutic agents for AD.
Main Methods:
- Primary mouse microglia and BV2 cell lines were treated with mCRP.
- The effects of mCRP and sEH inhibitors (UB-SCG-55, UB-SCG-65, TPPU) were analyzed using cell imaging and molecular techniques.
- Inflammatory mediators, gene activation pathways, and microglial phenotype (M1-like polarization) were assessed.
Main Results:
- mCRP induced a pro-inflammatory response via iNOS, NLRP3, and COX-2 pathways, increasing cytokine production.
- mCRP was shown to bind to and penetrate the cell membrane.
- sEH inhibitors effectively counteracted mCRP-induced microglial activation, with UB-SCG-55 showing the highest potency.
- Morphological analysis confirmed mCRP-induced polarization of microglia towards an M1-like phenotype.
Conclusions:
- mCRP directly activates microglia, contributing to neuroinflammation in diseases like AD.
- sEH inhibitors demonstrate significant potential as a novel therapeutic strategy against mCRP-induced neuroinflammation and associated neurodegenerative conditions.
- UB-SCG-55 shows promise as a lead compound for developing new treatments for neuroinflammatory disorders.
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