This study was designed to test the hypothesis that improved mitochondrial biogenesis could help reducing ischemic cerebral injury. We found that levels of proliferator-activated receptor γ coactivator 1α and nuclear respiratory factor-1, mitochondrial DNA content and other markers of mitochondrial biogenesis and function were reduced in primary mouse cortical neurons under oxygen-glucose deprivation (OGD). The glycogen synthase kinase-3 (GSK-3) inhibitor SB216763 activated an efficient mitochondrial biogenesis program in control cortical neurons and counteracted the OGD-mediated mitochondrial biogenesis impairment. This was accompanied by the activation of an antioxidant response that reduced mitochondrial reactive oxygen species generation and ischemic neuronal damage. The in vitro effects of SB216763 were mimicked by two other structurally unrelated GSK-3 inhibitors. The protective effects of SB216763 on OGD-mediated neuronal damage were abolished in the presence of diverse mitochondrial inhibitors. Finally, when systemically administered in vivo, SB216763 reduced the infarct size and recovered the loss of mitochondrial DNA in mice subjected to permanent middle cerebral artery occlusion. We conclude that GSK-3 inhibition by SB216763 might pave the way of novel promising therapies aimed at stimulating the renewal of functional mitochondria and reducing reactive oxygen species-mediated damage in ischemic stroke.

Glycogen synthase kinase-3 inhibition reducesischemic cerebral damage, restores impaired mitochondrial biogenesis and preventsROS production

VALERIO, Alessandra;DOSSENA, Marta;SPANO, Pier Franco;
2011-01-01

Abstract

This study was designed to test the hypothesis that improved mitochondrial biogenesis could help reducing ischemic cerebral injury. We found that levels of proliferator-activated receptor γ coactivator 1α and nuclear respiratory factor-1, mitochondrial DNA content and other markers of mitochondrial biogenesis and function were reduced in primary mouse cortical neurons under oxygen-glucose deprivation (OGD). The glycogen synthase kinase-3 (GSK-3) inhibitor SB216763 activated an efficient mitochondrial biogenesis program in control cortical neurons and counteracted the OGD-mediated mitochondrial biogenesis impairment. This was accompanied by the activation of an antioxidant response that reduced mitochondrial reactive oxygen species generation and ischemic neuronal damage. The in vitro effects of SB216763 were mimicked by two other structurally unrelated GSK-3 inhibitors. The protective effects of SB216763 on OGD-mediated neuronal damage were abolished in the presence of diverse mitochondrial inhibitors. Finally, when systemically administered in vivo, SB216763 reduced the infarct size and recovered the loss of mitochondrial DNA in mice subjected to permanent middle cerebral artery occlusion. We conclude that GSK-3 inhibition by SB216763 might pave the way of novel promising therapies aimed at stimulating the renewal of functional mitochondria and reducing reactive oxygen species-mediated damage in ischemic stroke.
2011
MIUR (compresi PRIN FIRB,FISR)
LS3_6 Organelle biology
LS3_8 Signal transduction
LS5_3 Neurochemistry and neuropharmacology
Esperti anonimi
Inglese
Internazionale
STAMPA
116
1148
1159
12
Scopus 92nd percentile benchmarks compared to Cellular and Molecular Neuroscience articles of the same age and document type Field-Weighted Citation Impact 2.73 (FWCI shows how well cited this article is when compared to similar articles. A FWCI greater than 1.00 means the article is more cited than expected according to the average. It takes into account: The year of publication, Document type, and Disciplines associated with its source) Scopus, accessed May 19, 2017
cerebral ischemia; glycogen synthase kinase-3; mitochondrial biogenesis; PGC-1alpha; reactive oxygen species
http://onlinelibrary.wiley.com/doi/10.1111/j.1471-4159.2011.07171.x/abstract;jsessionid=582E2F279A2E8A4967A7FD31BAA6FFC2.f02t02
no
10
info:eu-repo/semantics/article
262
Valerio, Alessandra; Bertolotti, P; Delbarba, A; Perego, C; Dossena, Marta; Ragni, M; Spano, Pier Franco; Carruba, Mo; De Simoni, Mg; Nisoli, E....espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/52047
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