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Results: 1-8 |
Results: 8

Authors: Dabbeni-Sala, F Floreani, M Franceschini, D Skaper, SD Giusti, P
Citation: F. Dabbeni-sala et al., Kainic acid induces selective mitochondrial oxidative phosphorylation enzyme dysfunction in cerebellar granule neurons: protective effects of melatonin and GSH ethyl ester, FASEB J, 15(8), 2001, pp. NIL_378-NIL_397

Authors: Skaper, SD Giusti, P
Citation: Sd. Skaper et P. Giusti, Kainic acid induces selective mitochondrial oxidative phosphorylation enzyme dysfunction in cerebellar granule neurons: protective effects of melatonin and GSH ethyl ester (vol 15, pg 1786, 2001), FASEB J, 15(13), 2001, pp. NIL_4-NIL_4

Authors: Dabbeni-Sala, F Di Santo, S Franceschini, D Skaper, SD Giusti, P
Citation: F. Dabbeni-sala et al., Melatonin protects against 6-OHDA-induced neurotoxicity in rats: a role for mitochondrial complex I activity, FASEB J, 15(1), 2001, pp. 164-170

Authors: Cross, DAE Culbert, AA Chalmers, KA Facci, L Skaper, SD Reith, AD
Citation: Dae. Cross et al., Selective small-molecule inhibitors of glycogen synthase kinase-3 activityprotect primary neurones from death, J NEUROCHEM, 77(1), 2001, pp. 94-102

Authors: Skaper, SD Facci, L Kee, WJ Strijbos, PJLM
Citation: Sd. Skaper et al., Potentiation by histamine of synaptically mediated excitotoxicity in cultured hippocampal neurones: a possible role for mast cells, J NEUROCHEM, 76(1), 2001, pp. 47-55

Authors: Williams, EJ Williams, G Howell, FV Skaper, SD Walsh, FS Doherty, P
Citation: Ej. Williams et al., Identification of an N-cadherin motif that can interact with the fibroblast growth factor receptor and is required for axonal growth, J BIOL CHEM, 276(47), 2001, pp. 43879-43886

Authors: Skaper, SD Kee, WJ Facci, L Macdonald, G Doherty, P Walsh, FS
Citation: Sd. Skaper et al., The FGFR1 inhibitor PD 173074 selectively and potently antagonizes FGF-2 neurotrophic and neurotropic effects, J NEUROCHEM, 75(4), 2000, pp. 1520-1527

Authors: Ceccon, M Giusti, P Facci, L Borin, G Imbesi, M Floreani, M Skaper, SD
Citation: M. Ceccon et al., Intracellular glutathione levels determine cerebellar granule neuron sensitivity to excitotoxic injury by kainic acid, BRAIN RES, 862(1-2), 2000, pp. 83-89
Risultati: 1-8 |