scholarly article | Q13442814 |
P50 | author | Slawomir Golda | Q114330737 |
Wiktor Bilecki | Q67880710 | ||
Marcin Piechota | Q96058271 | ||
Ryszard Przewłocki | Q56811246 | ||
Michał Korostyński | Q67880705 | ||
P2093 | author name string | Michal Slezak | |
Jaroslaw Dzbek | |||
Agnieszka Gieryk | |||
Eliza Wlazlo | |||
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Morphine activates the E twenty six-like transcription factor-1/serum response factor pathway via extracellular signal-regulated kinases 1/2 in F11 cells derived from dorsal root ganglia neurons | Q42719690 | ||
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Glucocorticoid receptors in dopaminoceptive neurons, key for cocaine, are dispensable for molecular and behavioral morphine responses. | Q43017501 | ||
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The involvement of glial cells in the development of morphine tolerance | Q43542087 | ||
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Type II glucocorticoid receptors are expressed in oligodendrocytes and astrocytes | Q43612136 | ||
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Primary astroglial cultures derived from several rat brain regions differentially express mu, delta and kappa opioid receptor mRNA. | Q44342405 | ||
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Memory reconsolidation engages only a subset of immediate-early genes induced during consolidation. | Q45281117 | ||
The proteomic analysis of primary cortical astrocyte cell culture after morphine administration | Q45745048 | ||
Psychological stress suppresses innate IFN-gamma production via glucocorticoid receptor activation: reversal by the anxiolytic chlordiazepoxide. | Q45974165 | ||
Differential promotion of glutamate transporter expression and function by glucocorticoids in astrocytes from various brain regions. | Q46633559 | ||
Knockout of ERK1 enhances cocaine-evoked immediate early gene expression and behavioral plasticity | Q46890926 | ||
Glucocorticoids-potent modulators of astrocytic calcium signaling | Q48105665 | ||
Quantitative in situ hybridization histochemistry reveals increased levels of corticotropin-releasing factor mRNA after adrenalectomy in rats | Q48288768 | ||
Effect of morphine on hypothalamic corticotropin-releasing factor (CRF) and pituitary-adrenocortical activity | Q48317477 | ||
Effect of brief corticosterone administration on SGK1 and RGS4 mRNA expression in rat hippocampus. | Q48389435 | ||
Stress-induced sensitization to amphetamine and morphine psychomotor effects depend on stress-induced corticosterone secretion | Q48395549 | ||
Region-specific transcriptional changes following the three antidepressant treatments electro convulsive therapy, sleep deprivation and fluoxetine | Q48398988 | ||
Morphine conditioned place preference depends on glucocorticoid receptors in both hippocampus and nucleus accumbens | Q48435754 | ||
Opioids excite dopamine neurons by hyperpolarization of local interneurons | Q48543154 | ||
Post-translational regulation of EAAT2 function by co-expressed ubiquitin ligase Nedd4-2 is impacted by SGK kinases. | Q48599640 | ||
Psychophysiological stress-regulated gene expression in mice | Q48942823 | ||
Specific regulatory motifs predict glucocorticoid responsiveness of hippocampal gene expression. | Q48946604 | ||
Novel genomic effects of glucocorticoids in epidermal keratinocytes: inhibition of apoptosis, interferon-gamma pathway, and wound healing along with promotion of terminal differentiation. | Q51106631 | ||
Localization of glucocorticoid receptors at postsynaptic membranes in the lateral amygdala. | Q51988552 | ||
Glial fibrillary acidic protein and the mesolimbic dopamine system: regulation by chronic morphine and Lewis-Fischer strain differences in the rat ventral tegmental area. | Q52272976 | ||
Opioids disrupt Ca2+ homeostasis and induce carbonyl oxyradical production in mouse astrocytes in vitro: transient increases and adaptation to sustained exposure. | Q52530654 | ||
Regulation of the glutamate transporter EAAT1 by the ubiquitin ligase Nedd4-2 and the serum and glucocorticoid-inducible kinase isoforms SGK1/3 and protein kinase B | Q56593692 | ||
P433 | issue | 4 | |
P921 | main subject | morphine | Q81225 |
astrocyte | Q502961 | ||
P304 | page(s) | 623-635 | |
P577 | publication date | 2013-01-22 | |
P1433 | published in | Glia | Q15716658 |
P1476 | title | Astrocytes are a neural target of morphine action via glucocorticoid receptor-dependent signaling. | |
P478 | volume | 61 |