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Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Preconditioning of microglia by α-synuclein strongly affects the response induced by toll-like receptor (TLR)
Cintia Roodveldt1, Adahir Labrador-Garrido, Elena Gonzalez-Rey
1CABIMER, Andalusian Center for Molecular Biology and Regenerative Medicine, Seville, Spain.
Abstract:
In recent years, it has become accepted that α-synuclein (αSyn) has a key role in the microglia-mediated neuroinflammation, which accompanies the development of Parkinson's disease and other related disorders, such as Dementia with Lewy Bodies and Alzheimer's disease. Nevertheless, the cellular and molecular mechanisms underlying its pathological actions, especially in the sporadic forms of the diseases, are not completely understood. Intriguingly, several epidemiological and animal model studies have revealed a link between certain microbial infections and the onset or progression of sporadic forms of these neurodegenerative disorders. In this work, we have characterized the effect of toll-like receptor (TLR) stimulation on primary murine microglial cultures and analysed the impact of priming cells with extracellular wild-type (Wt) αSyn on the subsequent TLR stimulation of cells with a set of TLR ligands. By assaying key interleukins and chemokines we report that specific stimuli, in particular Pam3Csk4 (Pam3) and single-stranded RNA40 (ssRNA), can differentially affect the TLR2/1- and TLR7-mediated responses of microglia when pre-conditioned with αSyn by augmenting IL-6, MCP-1/CCL2 or IP-10/CXCL10 secretion levels. Furthermore, we report a skewing of αSyn-primed microglia stimulated with ssRNA (TLR7) or Pam3 (TLR2/1) towards intermediate but at the same time differential, M1/M2 phenotypes. Finally, we show that the levels and intracellular location of activated caspase-3 protein change significantly in αSyn-primed microglia after stimulation with these particular TLR agonists. Overall, we report a remarkable impact of non-aggregated αSyn pre-sensitization of microglia on TLR-mediated immunity, a phenomenon that could contribute to triggering the onset of sporadic α-synuclein-related neuropathologies.
Insights
Alpha-synuclein (αSyn) priming alters microglial responses to toll-like receptor (TLR) stimulation, potentially impacting neuroinflammation in Parkinson's disease. This study reveals how αSyn pre-sensitization affects immune signaling and cell phenotypes.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Alpha-synuclein (αSyn) is implicated in microglia-mediated neuroinflammation in Parkinson's disease and related disorders.
- The precise mechanisms of αSyn's pathological actions, particularly in sporadic disease forms, remain unclear.
- Microbial infections are linked to the onset or progression of sporadic neurodegenerative diseases.
Purpose of the Study:
- To investigate the effect of toll-like receptor (TLR) stimulation on primary microglia.
- To analyze how priming microglia with extracellular wild-type αSyn impacts subsequent TLR stimulation.
- To understand the role of αSyn pre-sensitization in microglial immune responses.
Main Methods:
- Primary murine microglial cultures were used.
- Cells were primed with extracellular wild-type αSyn.
- Primed cells were stimulated with various TLR ligands (e.g., Pam3Csk4, ssRNA).
- Interleukin and chemokine secretion levels were measured.
- Microglial phenotypes (M1/M2) and activated caspase-3 levels were assessed.
Main Results:
- αSyn priming differentially modulated TLR2/1 and TLR7 responses.
- Specific TLR agonists (Pam3, ssRNA) augmented IL-6, MCP-1/CCL2, and IP-10/CXCL10 secretion in αSyn-primed microglia.
- αSyn-primed microglia exhibited a shift towards intermediate M1/M2 phenotypes upon ssRNA or Pam3 stimulation.
- Activated caspase-3 levels were significantly altered in αSyn-primed microglia after TLR agonist stimulation.
Conclusions:
- Non-aggregated αSyn pre-sensitization significantly impacts TLR-mediated microglial immunity.
- This phenomenon may contribute to the initiation of sporadic α-synuclein-related neuropathologies.
- Understanding these interactions is crucial for developing therapeutic strategies for neurodegenerative diseases.
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