Inflammation contributes to a wide variety of brain pathologies. In this chapter methods are described for using microglia and astrocytes in culture to investigate inflammatory processes and inflammatory neurodegeneration, including the use of neuronal/glial co-cultures and transwells. Methods for detecting and characterising inflammatory activation in culture, including changes in microglial phenotype,microglial phagocytosis and expression of pro-inflammatory cytokines . The protocols for how to determine cellular production of superoxide, hydrogen peroxide, peroxynitrite and nitric oxide in culture are described.JRC.I.2-Validation of Alternative Method
Abstract Neuroinflammation is a complex biological process that plays a significant role in various ...
Astrocytes and microglia are the main cell population besides neurons in the central nervous system ...
Astrocytes and microglia are the main cell population besides neurons in the central nervous system ...
Neuroinflammation is observed in many brain pathologies: in neurodegenerative diseases and multiple ...
Microglia, the resident immune cells of the brain, have been implicated in numerous neurodegenerativ...
BackgroundInteractions between neurons, astrocytes, and microglia critically influence neuroinflamma...
Microglial activation represents an increasingly important concept in the pathogenesis of neurodegen...
Abstract only availableSuperoxide, O2, is a free radical generated in cells and is a precursor for p...
AbstractInteractions between neurons, astrocytes and microglia critically influence neuroinflammator...
AbstractInteractions between neurons, astrocytes and microglia critically influence neuroinflammator...
BackgroundInteractions between neurons, astrocytes, and microglia critically influence neuroinflamma...
Before antibiotics and vaccines were discovered, microbes were the primary cause of mortality rates....
BackgroundInteractions between neurons, astrocytes, and microglia critically influence neuroinflamma...
Interactions between neurons, astrocytes and microglia critically influence neuroinflammatory respon...
Microglia are the inflammatory cells of the brain and are activated in neuropathological conditions....
Abstract Neuroinflammation is a complex biological process that plays a significant role in various ...
Astrocytes and microglia are the main cell population besides neurons in the central nervous system ...
Astrocytes and microglia are the main cell population besides neurons in the central nervous system ...
Neuroinflammation is observed in many brain pathologies: in neurodegenerative diseases and multiple ...
Microglia, the resident immune cells of the brain, have been implicated in numerous neurodegenerativ...
BackgroundInteractions between neurons, astrocytes, and microglia critically influence neuroinflamma...
Microglial activation represents an increasingly important concept in the pathogenesis of neurodegen...
Abstract only availableSuperoxide, O2, is a free radical generated in cells and is a precursor for p...
AbstractInteractions between neurons, astrocytes and microglia critically influence neuroinflammator...
AbstractInteractions between neurons, astrocytes and microglia critically influence neuroinflammator...
BackgroundInteractions between neurons, astrocytes, and microglia critically influence neuroinflamma...
Before antibiotics and vaccines were discovered, microbes were the primary cause of mortality rates....
BackgroundInteractions between neurons, astrocytes, and microglia critically influence neuroinflamma...
Interactions between neurons, astrocytes and microglia critically influence neuroinflammatory respon...
Microglia are the inflammatory cells of the brain and are activated in neuropathological conditions....
Abstract Neuroinflammation is a complex biological process that plays a significant role in various ...
Astrocytes and microglia are the main cell population besides neurons in the central nervous system ...
Astrocytes and microglia are the main cell population besides neurons in the central nervous system ...