Methylphenidate Decreases ATP Levels and Impairs Glutamate Uptake and Na+,K+-ATPase Activity in Juvenile Rat Hippocampus
Autor: | Mateus Grings, Felipe Schmitz, Guilhian Leipnitz, Daniella de Moura Coelho, Carmen Regla Vargas, Bruna Zanotto, Helena Biasibetti, Paula Pierozan, André Felipe Rodrigues, Angela T. S. Wyse |
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Rok vydání: | 2016 |
Předmět: |
0301 basic medicine
medicine.medical_specialty biology Succinate dehydrogenase Neuroscience (miscellaneous) Respiratory chain Hippocampus Pharmacology Glutamine 03 medical and health sciences Cellular and Molecular Neuroscience Glutamatergic 030104 developmental biology 0302 clinical medicine Endocrinology Neurology Internal medicine mental disorders biology.protein medicine Citrate synthase Na+/K+-ATPase 030217 neurology & neurosurgery Homeostasis |
Zdroj: | Molecular Neurobiology. 54:7796-7807 |
ISSN: | 1559-1182 0893-7648 |
DOI: | 10.1007/s12035-016-0289-1 |
Popis: | The study of the long-term neurological consequences of early exposure with methylphenidate (MPH) is very important since this psychostimulant has been widely misused by children and adolescents who do not meet full diagnostic criteria for ADHD. The aim of this study was to examine the effect of early chronic exposure with MPH on amino acids profile, glutamatergic and Na+,K+-ATPase homeostasis, as well as redox and energy status in the hippocampus of juvenile rats. Wistar male rats received intraperitoneal injections of MPH (2.0 mg/kg) or saline solution (controls), once a day, from the 15th to the 45th day of age. Results showed that MPH altered amino acid profile in the hippocampus, decreasing glutamine levels. Glutamate uptake and Na+,K+-ATPase activity were decreased after chronic MPH exposure in the hippocampus of rats. No changes were observed in the immunocontents of glutamate transporters (GLAST and GLT-1), and catalytic subunits of Na+,K+-ATPase (α1, α2, and α3), as well as redox status. Moreover, MPH provoked a decrease in ATP levels in the hippocampus of chronically exposed rats, while citrate synthase, succinate dehydrogenase, respiratory chain complexes activities (II, II–III, and IV), as well as mitochondrial mass and mitochondrial membrane potential were not altered. Taken together, our results suggest that chronic MPH exposure at early age impairs glutamate uptake and Na+,K+-ATPase activity probably by decreasing in ATP levels observed in rat hippocampus. |
Databáze: | OpenAIRE |
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