Tumour necrosis factor alpha induces rapid reduction in AMPA receptor-mediated calcium entry in motor neurones by increasing cell surface expression of the GluR2 subunit: relevance to neurodegeneration
Publication date
2010Keyword
Animals;Biotinylation;
Blotting; Western;
Calcium; Metabolism;
Calcium signaling; Drug effects;
Cell survival; Drug effects;
Cells; Cultured;
Excitatory amino acid agonists; Toxicity;
Female;
Fluorescent antibody technique;
Kainic acid; Antagonists & inhibitors; Toxicity;
Mice;
Motor neurons; Drug effects;
Nerve degeneration; Pathology;
Neuroprotective agents;
Phosphatidylinositol 3-Kinases;
Pregnancy;
Receptors; AMPA; Antagonists & inhibitors; Biosynthesis; Genetics;
Receptors; Cell surface; Biosynthesis;
Receptors; Tumor necrosis factor; Drug effects;
Reverse transcriptase polymerase chain reaction;
Spectrometry; Fluorescence;
Tumor necrosis factor-alpha; Pharmacology;
p38 mitogen-activated protein kinases;
REF 2014