Matches in DBpedia 2016-04 for { <http://doi.org/10.1038/mp.2009.80> ?p ?o }
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- mp.2009.80 author "McEwen BS".
- mp.2009.80 author "McEwen BS, Chattarji S, Diamond DM, Jay TM, Reagan LP, Svenningsson P, Fuchs E".
- mp.2009.80 author2 "Chattarji S".
- mp.2009.80 author3 "Diamond DM".
- mp.2009.80 date "August 2009".
- mp.2009.80 date "March 2010".
- mp.2009.80 displayAuthors "3".
- mp.2009.80 doi "10.1038/mp.2009.80".
- mp.2009.80 first1 "B. S.".
- mp.2009.80 first1 "BS".
- mp.2009.80 first2 "S".
- mp.2009.80 first2 "S.".
- mp.2009.80 first3 "D. M.".
- mp.2009.80 first3 "DM".
- mp.2009.80 first4 "T M".
- mp.2009.80 first4 "T. M.".
- mp.2009.80 first4 "TM".
- mp.2009.80 first5 "L P".
- mp.2009.80 first5 "L. P.".
- mp.2009.80 first5 "LP".
- mp.2009.80 first6 "P".
- mp.2009.80 first6 "P.".
- mp.2009.80 first7 "E".
- mp.2009.80 first7 "E.".
- mp.2009.80 isCitedBy Biopsychiatry_controversy.
- mp.2009.80 isCitedBy Nootropic.
- mp.2009.80 isCitedBy Reuptake_enhancer.
- mp.2009.80 isCitedBy Tianeptine.
- mp.2009.80 issue "3".
- mp.2009.80 journal "Mol. Psychiatry".
- mp.2009.80 journal "Molecular Psychiatry".
- mp.2009.80 last1 "McEwen".
- mp.2009.80 last2 "Chattarji".
- mp.2009.80 last3 "Diamond".
- mp.2009.80 last4 "Jay".
- mp.2009.80 last5 "Reagan".
- mp.2009.80 last6 "Svenningsson".
- mp.2009.80 last7 "Fuchs".
- mp.2009.80 nameListFormat "vanc".
- mp.2009.80 pages "237–249".
- mp.2009.80 pages "237–49".
- mp.2009.80 pmc "2902200".
- mp.2009.80 pmid "19704408".
- mp.2009.80 quote "Cognitive deficits, such as an impairment of attention, memory and problem solving, have often been reported in patients with depressive disorders . Cognitive deficits and memory impairments in patients with depression may arise via disruption of the hypothalamic-pituitary adrenal axis through hippocampal volume loss and changes in the amygdala. The magnitude of the hippocampal shrinkage reported in certain experimental conditions may partly underlie some of cognitive deficits that accompany major depression. Conversely, any prevention or restoration of these morphological changes in the hippocampus should be parallel to procognitive/promnesiant effects. Accordingly, tianeptine has particularly favorable effects on cognitive functions and the positive effect of tianeptine may be mediated through its upregulation of neurogenesis, but of course, the impact of neurogenesis on cognitive functions remains a matter of controversial debate.".
- mp.2009.80 quote "In a validated model of hippocampal-dependent memory impairment and synaptic plasticity changes by predator stress, acute tianeptine can prevent the deleterious effects of stress on spatial memory, an effect that does not depend on corticosterone levels . Tianeptine also facilitates focused attention behavior in the cat in response to its environment or towards a significant stimulus . It was shown to exert improving effects on learning as well as on working memory and on reference memory in rodents and to exhibit vigilance-enhancing effects in rats and monkeys ...".
- mp.2009.80 quote "Tianeptine prevents and reverses stress-induced glucocorticoid-mediated dendritic remodeling in CA3 pyramidal neurons in the hippocampus and stress-induced increases in dendritic length and branching in the amygdala . Tianeptine blocks the dendritic remodeling caused by stress or glucocorticoids , blocks stress-induced impairments of spatial memory performance in radial and Y-maze and antagonizes the deleterious effects of alcohol .".
- mp.2009.80 title "The neurobiological properties of tianeptine : from monoamine hypothesis to glutamatergic modulation".
- mp.2009.80 title "The neurobiological properties of tianeptine : from monoamine hypothesis to glutamatergic modulation.".
- mp.2009.80 url "http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2902200/".
- mp.2009.80 volume "15".