Ellen Unterwald

Affiliations: 
Temple Univ Sch Med, Philadelphia, PA, United States 
Area:
neuropharmacology
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"Ellen Unterwald"
Mean distance: 14.54 (cluster 11)
 
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Publications

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Brailoiu GC, Deliu E, Console Bram LM, et al. (2015) Cocaine Inhibits Store-Operated Ca2+ Entry in Brain Microvascular Endothelial Cells: Critical Role for Sigma-1 Receptors. The Biochemical Journal
Barr JL, Rasmussen BA, Tallarida CS, et al. (2015) Ceftriaxone attenuates acute cocaine-evoked dopaminergic neurotransmission in the nucleus accumbens of the rat. British Journal of Pharmacology
Enman NM, Arthur K, Ward SJ, et al. (2015) Anhedonia, Reduced Cocaine Reward, and Dopamine Dysfunction in a Rat Model of Posttraumatic Stress Disorder. Biological Psychiatry
Barr JL, Deliu E, Brailoiu GC, et al. (2015) Mechanisms of activation of nucleus accumbens neurons by cocaine via sigma-1 receptor-inositol 1,4,5-trisphosphate-transient receptor potential canonical channel pathways. Cell Calcium. 58: 196-207
Craige CP, Lewandowski S, Kirby LG, et al. (2015) Dorsal raphe 5-HT(2C) receptor and GABA networks regulate anxiety produced by cocaine withdrawal. Neuropharmacology. 93: 41-51
Barr JL, Unterwald EM. (2015) Activity-regulated gene expression in immature neurons in the dentate gyrus following re-exposure to a cocaine-paired environment. Hippocampus. 25: 354-62
Kravets JL, Reyes BA, Unterwald EM, et al. (2015) Direct targeting of peptidergic amygdalar neurons by noradrenergic afferents: linking stress-integrative circuitry. Brain Structure & Function. 220: 541-58
Parikh V, Naughton SX, Shi X, et al. (2014) Cocaine-induced neuroadaptations in the dorsal striatum: glutamate dynamics and behavioral sensitization. Neurochemistry International. 75: 54-65
Barr JL, Forster GL, Unterwald EM. (2014) Repeated cocaine enhances ventral hippocampal-stimulated dopamine efflux in the nucleus accumbens and alters ventral hippocampal NMDA receptor subunit expression. Journal of Neurochemistry. 130: 583-90
Shi X, Miller JS, Harper LJ, et al. (2014) Reactivation of cocaine reward memory engages the Akt/GSK3/mTOR signaling pathway and can be disrupted by GSK3 inhibition. Psychopharmacology. 231: 3109-18
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