Trevor Sharp
Affiliations: | Pharmacology | University of Oxford, Oxford, United Kingdom |
Area:
Depression, Schizophrenia, 5HT SignallingGoogle:
"Trevor Sharp"Mean distance: 16.86 (cluster 51)
Cross-listing: Chemistry Tree
Children
Sign in to add traineeYvonne Couch | grad student | Oxford | |
Judith V. Schweimer | post-doc | 2010- | Oxford |
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Publications
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Collins HM, Gullino LS, Ozdemir D, et al. (2024) Rebound activation of 5-HT neurons following SSRI discontinuation. Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology |
Gullino LS, Fuller C, Dunn P, et al. (2024) Evidence for a Role of 5-HT-glutamate Co-releasing Neurons in Acute Stress Mechanisms. Acs Chemical Neuroscience |
Ocana-Santero G, Packer AM, Sharp T, et al. (2024) Two-Photon Microscopy Reveals Sensory-Evoked Serotonin (5-HT) Release in Adult Mammalian Neocortex. Acs Chemical Neuroscience |
Schweimer JV, Brouard JT, Li Y, et al. (2022) In vivo electrophysiological study of the targeting of 5-HT receptor-expressing cortical interneurons by the multimodal antidepressant, vortioxetine. The European Journal of Neuroscience |
Barnes NM, Ahern GP, Becamel C, et al. (2021) International Union of Basic and Clinical Pharmacology. CX. Classification of Receptors for 5-hydroxytryptamine; Pharmacology and Function. Pharmacological Reviews. 73: 310-520 |
Sharp T, Barnes NM. (2020) Central 5-HT receptors and their function; present and future. Neuropharmacology. 108155 |
Joshi A, Wang DH, Watterson S, et al. (2020) Opportunities for multiscale computational modelling of serotonergic drug effects in Alzheimer's disease. Neuropharmacology. 108118 |
Matrov D, Kaart T, Lanfumey L, et al. (2018) Cerebral oxidative metabolism mapping in four genetic mouse models of anxiety and mood disorders. Behavioural Brain Research |
Antoniadou I, Kouskou M, Arsiwala T, et al. (2018) Ebselen has lithium-like effects on central 5-HTreceptor function. British Journal of Pharmacology |
Heckman PRA, Schweimer JV, Sharp T, et al. (2017) Phosphodiesterase 4 inhibition affects both the direct and indirect pathway: an electrophysiological study examining the tri-phasic response in the substantia nigra pars reticulata. Brain Structure & Function. 223: 739-748 |