<div><p>Neuron-microglia co-cultures treated with pro-inflammatory agents are a useful tool to study neuroinflammation <em>in vitro</em>, where to test the potential neuroprotective effect of anti-inflammatory compounds. However, a great diversity of experimental conditions can be found in the literature, making difficult to select the working conditions when considering this approach for the first time. We compared the use of neuron-primary microglia and neuron-BV2 cells (a microglial cell line) co-cultures, using different neuron:microglia ratios, treatments and time post-treatment to induce glial activation and derived neurotoxicity. We show that each model requires different experimental conditions, but that both neuron-BV2 and neuron-p...
BackgroundInteractions between neurons, astrocytes, and microglia critically influence neuroinflamma...
BackgroundInteractions between neurons, astrocytes, and microglia critically influence neuroinflamma...
BackgroundInteractions between neurons, astrocytes, and microglia critically influence neuroinflamma...
Neuron-microglia co-cultures treated with pro-inflammatory agents are a useful tool to study neuroin...
Neuron-microglia co-cultures treated with pro-inflammatory agents are a useful tool to study neuroin...
This is an open-access article distributed under the terms of the Creative Commons Attribution Licen...
Neuron-microglia co-cultures treated with pro-inflammatory agents are a useful tool to study neuroin...
AbstractInteractions between neurons, astrocytes and microglia critically influence neuroinflammator...
AbstractInteractions between neurons, astrocytes and microglia critically influence neuroinflammator...
Microglia are the main immune cells in the brain, playing a role in both physiological and pathologi...
Microglia are the main immune cells in the brain, playing a role in both physiological and pathologi...
Interactions between neurons, astrocytes and microglia critically influence neuroinflammatory respon...
none2Microglia are the main immune cells in the brain, playing a role in both physiological and path...
Interleukin (IL)-10, an anti-inflammatory cytokine, is expressed in the brain and can inhibit microg...
Interleukin (IL)-10, an anti-inflammatory cytokine, is expressed in the brain and can inhibit microg...
BackgroundInteractions between neurons, astrocytes, and microglia critically influence neuroinflamma...
BackgroundInteractions between neurons, astrocytes, and microglia critically influence neuroinflamma...
BackgroundInteractions between neurons, astrocytes, and microglia critically influence neuroinflamma...
Neuron-microglia co-cultures treated with pro-inflammatory agents are a useful tool to study neuroin...
Neuron-microglia co-cultures treated with pro-inflammatory agents are a useful tool to study neuroin...
This is an open-access article distributed under the terms of the Creative Commons Attribution Licen...
Neuron-microglia co-cultures treated with pro-inflammatory agents are a useful tool to study neuroin...
AbstractInteractions between neurons, astrocytes and microglia critically influence neuroinflammator...
AbstractInteractions between neurons, astrocytes and microglia critically influence neuroinflammator...
Microglia are the main immune cells in the brain, playing a role in both physiological and pathologi...
Microglia are the main immune cells in the brain, playing a role in both physiological and pathologi...
Interactions between neurons, astrocytes and microglia critically influence neuroinflammatory respon...
none2Microglia are the main immune cells in the brain, playing a role in both physiological and path...
Interleukin (IL)-10, an anti-inflammatory cytokine, is expressed in the brain and can inhibit microg...
Interleukin (IL)-10, an anti-inflammatory cytokine, is expressed in the brain and can inhibit microg...
BackgroundInteractions between neurons, astrocytes, and microglia critically influence neuroinflamma...
BackgroundInteractions between neurons, astrocytes, and microglia critically influence neuroinflamma...
BackgroundInteractions between neurons, astrocytes, and microglia critically influence neuroinflamma...