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Characterization and Isolation of Mouse Primary Microglia by Density Gradient Centrifugation
Published on: February 16, 2018
Syk inhibitors protect against microglia-mediated neuronal loss in culture
Timothy J Y Birkle1, Guy C Brown1
1Department of Biochemistry, University of Cambridge, Cambridge, United Kingdom.
Abstract:
Microglia are brain macrophages and play beneficial and/or detrimental roles in many brain pathologies because of their inflammatory and phagocytic activity. Microglial inflammation and phagocytosis are thought to be regulated by spleen tyrosine kinase (Syk), which is activated by multiple microglial receptors, including TREM2 (Triggering Receptor Expressed on Myeloid Cells 2), implicated in neurodegeneration. Here, we have tested whether Syk inhibitors can prevent microglia-dependent neurodegeneration induced by lipopolysaccharide (LPS) in primary neuron-glia cultures. We found that the Syk inhibitors BAY61-3606 and P505-15 (at 1 and 10 microM, respectively) completely prevented the neuronal loss induced by LPS, which was microglia-dependent. Syk inhibition also prevented the spontaneous loss of neurons from older neuron-glia cultures. In the absence of LPS, Syk inhibition depleted microglia from the cultures and induced some microglial death. However, in the presence of LPS, Syk inhibition had relatively little effect on microglial density (reduced by 0-30%) and opposing effects on the release of two pro-inflammatory cytokines (IL-6 decreased by about 45%, TNFα increased by 80%). Syk inhibition also had no effect on the morphological transition of microglia exposed to LPS. On the other hand, inhibition of Syk reduced microglial phagocytosis of beads, synapses and neurons. Thus, Syk inhibition in this model is most likely neuroprotective by reducing microglial phagocytosis, however, the reduced microglial density and IL-6 release may also contribute. This work adds to increasing evidence that Syk is a key regulator of the microglial contribution to neurodegenerative disease and suggests that Syk inhibitors may be used to prevent excessive microglial phagocytosis of synapses and neurons.
Insights
Spleen tyrosine kinase (Syk) inhibitors protect neurons from microglia-induced damage by reducing harmful microglial phagocytosis. This suggests Syk inhibitors may treat neurodegenerative diseases.
Area of Science:
- Neuroscience
- Immunology
Background:
- Microglia, brain macrophages, have dual roles in brain pathologies due to inflammatory and phagocytic activities.
- Spleen tyrosine kinase (Syk) regulates microglial functions, with its activation linked to receptors like TREM2, implicated in neurodegeneration.
Purpose of the Study:
- To investigate if spleen tyrosine kinase (Syk) inhibitors can prevent microglia-dependent neurodegeneration.
Main Methods:
- Primary neuron-glia cultures were treated with lipopolysaccharide (LPS) to induce microglia-dependent neurodegeneration.
- Syk inhibitors (BAY61-3606 and P505-15) were used to assess their neuroprotective effects.
- Microglial density, cytokine release (IL-6, TNFα), morphological changes, and phagocytic activity were analyzed.
Main Results:
- Syk inhibitors completely prevented LPS-induced neuronal loss and spontaneous neuronal loss in older cultures.
- Syk inhibition reduced microglial phagocytosis of beads, synapses, and neurons.
- Effects on microglial density and pro-inflammatory cytokine release (IL-6, TNFα) were observed, with varying impacts depending on LPS presence.
Conclusions:
- Syk inhibition is neuroprotective, primarily by reducing microglial phagocytosis of neurons and synapses.
- Reduced microglial density and IL-6 release may also contribute to neuroprotection.
- Syk inhibitors represent a potential therapeutic strategy for neurodegenerative diseases by modulating microglial activity.

