Why the study?
Do high-dose corticosteroids reduce cerebral infarct size and increase cerebral blood flow in a mouse model of transient cerebral ischemia?
Do high-dose corticosteroids reduce cerebral infarct size and increase cerebral blood flow in a mouse model of transient cerebral ischemia?
High-dose corticosteroids provide acute neuroprotection and increase cerebral blood flow via rapid, non-transcriptional activation of eNOS through the PI3K/Akt pathway.
High-dose corticosteroids show acute neuroprotection in murine stroke; hypothesis-generating for human translation and requires prospective trials.
Many cellular responses to corticosteroids involve the transcriptional modulation of target genes by the glucocorticoid receptor (GR).A rapid, non-nuclear effect of GR was found to mediate neuroprotection.High-dose corticosteroids (20 mg/kg intraperitoneally), given within 2 hours of transient cerebral ischemia, acutely increased endothelial nitric oxide synthase (eNOS) activity, augmented regional cerebral blood flow (CBF) by 40% to 50%, and reduced cerebral infarct size by 32%.These neuroprotective effects of corticosteroids were abolished by the GR antagonist RU486 and by inhibition of phosphatidylinositol 3-kinase (PI3K), and were absent in eNOS -/-mice.To determine the mechanism by which GR activated eNOS, we measured the effect of corticosteroids on PI3K and the protein kinase Akt.In a ligand-dependent manner, GR activated PI3K and Akt in vitro and in vivo caused NO-dependent vasodilation, which was blocked by cotreatment with RU486 or the PI3K inhibitor LY294002 but not by transcriptional inhibitors.Indeed, a mutant GR, which cannot dimerize and bind to DNA, still activated PI3K and Akt in response to corticosteroids.These findings indicate that non-nuclear GR rapidly activates eNOS through the PI3K/Akt pathway and suggest that this mechanism mediates the acute neuroprotective effects of corticosteroids through augmentation of CBF.
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Limbourg et al. (2002) studied this question.
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