Browsing by Author Beas-Zárate, Carlos., Universidad de Guadalajara. Centro Universitario de Ciencias Biológicas y Agropecuarias

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Lack of Jun-N-terminal kinase 3 (JNK3) does not protect against neurodegeneration induced by 3-nitropropionic acidJunyent, F.; de Lemos, L.; Verdaguer, E.; Pallas, M.; Folch, J.; Beas-Zárate, Carlos; Camins, A.; Auladell, C.--
Lack of Jun-N-terminal kinase 3 (JNK3) does not protect against neurodegeneration induced by 3-nitropropionic acidJunyent, F.; de Lemos, L.; Verdaguer, E.; Pallas, M.; Folch, J.; Beas-Zárate, Carlos; Camins, A.; Auladell, C.--
Low tryptophan and protein in the diet during development increase the susceptibility to convulsions in adult ratsFeria-Velasco, A.; Mena-Munguia, S.; Carabez-Torres, J.; Gomez-Medrano, A.; Recendiz-Hurtado, F.; Orozco-Suarez, S.; Beas-Zárate, Carlos--
Low tryptophan and protein in the diet during development increase the susceptibility to convulsions in adult ratsFeria-Velasco, A.; Mena-Munguia, S.; Carabez-Torres, J.; Gomez-Medrano, A.; Recendiz-Hurtado, F.; Orozco-Suarez, S.; Beas-Zárate, Carlos--
Mavoglurant as a treatment for Parkinson's diseasePetrov, D.; Pedros, I.; De Lemos, M.L.; Pallas, M.; Canudas, A.M.; Lazarowski, A.; Beas-Zárate, Carlos; Auladell, C.; Folch, J.; Camins, A.--
Mavoglurant as a treatment for Parkinson's diseasePetrov, D.; Pedros, I.; De Lemos, M.L.; Pallas, M.; Canudas, A.M.; Lazarowski, A.; Beas-Zárate, Carlos; Auladell, C.; Folch, J.; Camins, A.--
Mice Lacking Functional Fas Death Receptors Are Protected from Kainic Acid-Induced Apoptosis in the HippocampusEttcheto M; Junyent F; de Lemos L; Pallas M; Folch J; Beas-Zárate, Carlos; Verdaguer E; Gomez-Sintes R; Lucas J.J; Auladell C--
Microarray analysis of rat hippocampus exposed to excitotoxicity: Reversal Na +/Ca 2+ exchanger NCX3 is overexpressed in glial cellsOrtuno-Sahagun, D.; Rivera-Cervantes, M.C.; Gudino-Cabrera, G.; Junyent, F.; Verdaguer, E.; Auladell, C.; Pallas, M.; Camins, A.; Beas-Zárate, Carlos--
Microarray analysis of rat hippocampus exposed to excitotoxicity: Reversal Na +/Ca 2+ exchanger NCX3 is overexpressed in glial cellsOrtuno-Sahagun, D.; Rivera-Cervantes, M.C.; Gudino-Cabrera, G.; Junyent, F.; Verdaguer, E.; Auladell, C.; Pallas, M.; Camins, A.; Beas-Zárate, Carlos--
Modification of dopaminergic markers expression in the striatum by neonatal exposure to glutamate during developmentLopez-Perez, S.J.; Vergara, P.; Ventura-Valenzuela, J.P.; Urena-Guerrero, M.E.; Segovia, J.; Beas-Zárate, Carlos--
Modification of dopaminergic markers expression in the striatum by neonatal exposure to glutamate during developmentLopez-Perez, S.J.; Vergara, P.; Ventura-Valenzuela, J.P.; Urena-Guerrero, M.E.; Segovia, J.; Beas-Zárate, Carlos--
Modifications in the seizures susceptibility by excitotoxic neuronal damage and its possible relationship with the pharmacoresistanceUrena-Guerrero M.E; Feria-Velasco A.I; Gudino-Cabrera G; Espuny A.C; Beas-Zárate, Carlos--
Modifications in the seizures susceptibility by excitotoxic neuronal damage and its possible relationship with the pharmacoresistanceUrena-Guerrero M.E; Feria-Velasco A.I; Gudino-Cabrera G; Espuny A.C; Beas-Zárate, Carlos--
Neonatal exposure to monosodium glutamate induces cell death and dendritic hypotrophy in rat prefrontocortical pyramidal neuronsGonzalez-Burgos, I; Perez-Vega, MI; Beas-Zárate, Carlos--
Neonatal exposure to monosodium glutamate induces cell death and dendritic hypotrophy in rat prefrontocortical pyramidal neuronsGonzalez-Burgos, I; Perez-Vega, MI; Beas-Zárate, Carlos--
Neonatal exposure to monosodium L-glutamate induces loss of neurons and cytoarchitectural alterations in hippocampal CA1 pyramidal neurons of adult ratsBeas-Zárate, Carlos; Perez-Vega, M.I.; Gonzalez-Burgos, I.--
Neonatal exposure to monosodium L-glutamate induces loss of neurons and cytoarchitectural alterations in hippocampal CA1 pyramidal neurons of adult ratsBeas-Zárate, Carlos; Perez-Vega, M.I.; Gonzalez-Burgos, I.--
Neonatal monosodium glutamate treatment modifies glutamic acid decarboxylase activity during rat brain postnatal developmentUrena-Guerrero, M.E.; Lopez-Perez, S.J.; Beas-Zárate, Carlos--
Neonatal monosodium glutamate treatment modifies glutamic acid decarboxylase activity during rat brain postnatal developmentUrena-Guerrero, M.E.; Lopez-Perez, S.J.; Beas-Zárate, Carlos--
Neuronal cell death due to glutamate excitotocity is mediated by P38 activation in the rat cerebral cortexTorres, J.E.S.; Chaparro-Huerta, V.; Cervantres, M.C.R.; Montes-Gonzalez, R.; Soto, M.E.F.; Beas-Zárate, Carlos--