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Detection of MicroRNAs in Microglia by Real-time PCR in Normal CNS and During Neuroinflammation
Published on: July 23, 2012
miR-124 disinhibits neurite outgrowth in an inflammatory environment
Hanna Hartmann1, Kristin Hoehne1, Elke Rist1
1NMI Naturwissenschaftliches und Medizinisches Institut an der Universität Tübingen, Markwiesenstr. 55, 72770, Reutlingen, Germany.
Abstract:
Lesions of the central nervous system elicit inflammatory responses that counteract the regeneration of neurites. Microglia and infiltrating macrophages that were activated by trauma have been identified as cellular sources of inhibitory factors. We examine cultured macrophage (RAW264.7) and neuronal (PC12) cell lines to ascertain the potential modulators of the inflammatory impact on neurons. By exposing quiescent macrophages to lipopolysaccharide (LPS) and interferon γ (IFN-γ), cells can be transformed into an activated M1 phenotype. Neurite extension was induced in PC12 cells by culturing them in the presence of nerve growth factor. Neurite outgrowth was quantified by analyzing immunofluorescence and phase contrast microscopy images. Activated macrophages significantly reduced neurite extension. Macrophage activation by LPS/IFN-γ induced a 1000-fold increase in tumor necrosis factor alpha (TNF-α) secretion, as quantified by enzyme-linked immunosorbent assays (ELISA). Recombinant TNF-α inhibited neurite formation at concentrations as low as 0.016 ng/ml. In contrast, the masking of TNF-α with specific functional antibodies abrogated neurite growth inhibition by activated macrophages. Taken together, these results indicated that TNF-α is a key component of inhibitory macrophage action. The transfection of PC12 neurons with microRNA-124 (miR-124) counteracted the inhibition of neurites mediated by both recombinant TNF-α and macrophages. miR-124 did not stimulate neurite formation per se, nor was cell viability affected. These data suggest that miR-124 might be a valuable tool for desensitizing neurons to a repulsive inflammatory environment.
Insights
Tumor necrosis factor alpha (TNF-α) from activated macrophages inhibits neurite outgrowth. MicroRNA-124 (miR-124) desensitizes neurons to this inflammatory inhibition, offering potential therapeutic strategies for central nervous system repair.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Central nervous system (CNS) injuries trigger inflammation, hindering neurite regeneration.
- Activated microglia and macrophages release factors that inhibit neuronal repair.
Purpose of the Study:
- To investigate the role of macrophage-derived factors in inhibiting neurite outgrowth.
- To explore microRNA-124 (miR-124) as a potential modulator of neuronal response to inflammation.
Main Methods:
- Cultured RAW264.7 macrophages activated with lipopolysaccharide (LPS) and interferon γ (IFN-γ).
- Induced neurite extension in PC12 neuronal cells using nerve growth factor.
- Quantified neurite outgrowth via microscopy and measured tumor necrosis factor alpha (TNF-α) secretion using ELISA.
- Tested the effects of recombinant TNF-α, anti-TNF-α antibodies, and miR-124 transfection on neurite outgrowth.
Main Results:
- Activated macrophages significantly inhibited PC12 neurite extension.
- Macrophage activation led to a substantial increase in TNF-α secretion.
- Recombinant TNF-α mimicked the inhibitory effect of activated macrophages on neurites.
- Blocking TNF-α abrogated the inhibitory action of activated macrophages.
- miR-124 transfection counteracted neurite inhibition by both TNF-α and activated macrophages without affecting cell viability.
Conclusions:
- TNF-α is a critical mediator of macrophage-induced inhibition of neurite outgrowth.
- miR-124 shows potential for desensitizing neurons to inflammatory environments, aiding CNS repair strategies.

