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scopus(19)
Antiapoptotic effects of roscovitine in cerebellar granule cells deprived of serum and potassium: A cell cycle-related mechanism
ArticleAbstract: Neuronal apoptosis may be partly due to inappropriate control of the cell cycle. We used serum depriPalabras claves:apoptosis, Caspase-3, cell cycle, cyclin, E2F-1, RoscovitineAutores:Antoni Camins, Camarasa J., Canudas A.M., Escubedo E., Jiménez A., Jordá E.G., Pallás M., Pubill D., Verdaguer E.Fuentes:scopus3,4-Methylenedioxymethamphetamine enhances kainic acid convulsive susceptibility
ArticleAbstract: Kainic acid (KA) causes seizures and neuronal loss in the hippocampus. The present study investigatePalabras claves:Calbindin, Calretinin, Kainic acid, MDMA, Parvalbumin, seizuresAutores:Abad S., Antoni Camins, Auladell C., Camarasa J., Escubedo E., Junyent F., Pallás M., Pubill D.Fuentes:scopusA flow cytometric study of N-methyl-D-aspartate effects on dissociated cerebellar cells
ArticleAbstract: The effects of N-methyl-D-aspartate (NMDA) on the generation of intracellular reactive oxygen speciePalabras claves:calcium, Cerebellum, Flow cytometry, granule cell, Indo-1, MK-801, NMDA, Oxidative StressAutores:Antoni Camins, Camarasa J., Escubedo E., Sureda F.X., Trullàs R.Fuentes:scopusAdaptive Plasticity in the Hippocampus of Young Mice Intermittently Exposed to MDMA Could Be the Origin of Memory Deficits
ArticleAbstract: (±)3,4-Methylenedioxymethamphetamine (MDMA) is a relatively selective dopaminergic neurotoxin in micPalabras claves:ARC, BDNF, MDMA, Mice, Recognition memory, Synaptic plasticityAutores:Abad S., Antoni Camins, Camarasa J., Escubedo E., Pubill D.Fuentes:scopusAdolescent exposure to MDMA induces dopaminergic toxicity in substantia nigra and potentiates the amyloid plaque deposition in the striatum of APPswe/PS1dE9 mice
ArticleAbstract: MDMA is one of the most used drugs by adolescents and its consumption has been associated with manyPalabras claves:3.4-Methylenedioxymethamphetamine, amyloid plaques, APPswe/PS1dE9 mice, Dopaminergic dysfunction, StriatumAutores:Abad S., Antoni Camins, Camarasa J., Escubedo E., Pubill D., Ramon-Duaso C.Fuentes:scopusFlow cytometric study of mitochondrial dysfunction after AMPA receptor activation
ArticleAbstract: The effect of AMPA-receptor stimulation on MMP and on the concentration of intracellular calcium ([CPalabras claves:AMPA, Cerebellar granule cells, Flow cytometry, Intracellular calcium, Mitochondrial membrane potentialAutores:Aguirre L., Antoni Camins, Camarasa J., Escubedo E., Gabriel C., Pallás M., Sureda F.X.Fuentes:scopusEffect of glutamate receptor ligands on mitochondrial membrane potential in rat dissociated cerebellar cells
ArticleAbstract: The effect of three different glutamate receptor ligands on mitochondrial membrane potential has beePalabras claves:Dissociated cerebellar cells, glutamate, kainate, Mitochondrial membrane potential, N-methyl-D-aspartate, RATAutores:Antoni Camins, Camarasa J., Escubedo E., Gabriel C., Sureda F.X.Fuentes:scopusEffects of MDMA on neuroplasticity, amyloid burden and phospho-tau expression in APPswe/PS1dE9 mice
ArticleAbstract: Background: 3,4-Methylenedioxymethamphetamine (MDMA) is still one of the most consumed drugs by adolPalabras claves:Alzheimer’s disease, amyloid plaques, MDMA, MEMORY, Mouse modelAutores:Abad S., Antoni Camins, Camarasa J., Escubedo E., Folch J., López-Arnau R., Pubill D., Ramon-Duaso C.Fuentes:scopusEffects of U-83836E on glutamate-induced neurotoxicity in dissociated rat cerebellar granule cells
ArticleAbstract: The effects of the lazaroid compound U-83836E on the glutamate-induced production of reactive oxygenPalabras claves:Autores:Antoni Camins, Camarasa J., Escubedo E., Gabriel C., Pallás M., Pubill D., Sureda F.X.Fuentes:scopusDifferent glial response to methamphetamine- and methylenedioxymethamphetamine-induced neurotoxicity
ArticleAbstract: The consequences of the neurotoxic insult induced by 3,4-methylenedioxymethamphetamine (MDMA, an ampPalabras claves:Ecstasy, Glial activation, HSP27, MDMA, Methamphetamine, Neurotoxicity, Peripheral-type benzodiazepine receptorAutores:Antoni Camins, Camarasa J., Canudas A.M., Escubedo E., Pallás M., Pubill D.Fuentes:scopus