Maria Sitges
Affiliations: | IIB UNAM |
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Sitges M, Aldana BI, Reed RC. (2016) Effect of the Anti-depressant Sertraline, the Novel Anti-seizure Drug Vinpocetine and Several Conventional Antiepileptic Drugs on the Epileptiform EEG Activity Induced by 4-Aminopyridine. Neurochemical Research. 41: 1365-74 |
Sitges M, Chiu LM, Reed RC. (2015) Effects of Levetiracetam, Carbamazepine, Phenytoin, Valproate, Lamotrigine, Oxcarbazepine, Topiramate, Vinpocetine and Sertraline on Presynaptic Hippocampal Na(+) and Ca(2+) Channels Permeability. Neurochemical Research |
Sitges M, Gómez CD, Aldana BI. (2014) Sertraline reduces IL-1β and TNF-α mRNA expression and overcomes their rise induced by seizures in the rat hippocampus. Plos One. 9: e111665 |
Gómez CD, Buijs RM, Sitges M. (2014) The anti-seizure drugs vinpocetine and carbamazepine, but not valproic acid, reduce inflammatory IL-1β and TNF-α expression in rat hippocampus. Journal of Neurochemistry. 130: 770-9 |
Herrera-Mundo N, Sitges M. (2013) Vinpocetine and α-tocopherol prevent the increase in DA and oxidative stress induced by 3-NPA in striatum isolated nerve endings. Journal of Neurochemistry. 124: 233-40 |
Sitges M, Aldana BI, Gómez CD, et al. (2012) The antidepressant sertraline prevents the behavioral and EEG changes induced in two animal models of seizures. Epilepsy & Behavior : E&B. 25: 511-6 |
Aldana BI, Sitges M. (2012) Sertraline inhibits pre-synaptic Na⁺ channel-mediated responses in hippocampus-isolated nerve endings. Journal of Neurochemistry. 121: 197-205 |
Sitges M, Sanchez-Tafolla BM, Chiu LM, et al. (2011) Vinpocetine inhibits glutamate release induced by the convulsive agent 4-aminopyridine more potently than several antiepileptic drugs Epilepsy Research. 96: 257-266 |
Herrera-Mundo N, Sitges M. (2010) Mechanisms underlying striatal vulnerability to 3-nitropropionic acid. Journal of Neurochemistry. 114: 597-605 |
Sitges M, Aldana BI, Chiu LM, et al. (2009) Characterization of phenytoin, carbamazepine, vinpocetine and clorgyline simultaneous effects on sodium channels and catecholamine metabolism in rat striatal nerve endings. Neurochemical Research. 34: 470-9 |