David Woldbye

Affiliations: 
University of Copenhagen, København, Denmark 
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Stokholm K, Thomsen MB, Phan JA, et al. (2021) α-Synuclein Overexpression Increases Dopamine D2/3 Receptor Binding and Immune Activation in a Model of Early Parkinson's Disease. Biomedicines. 9
Sørensen G, Rickhag M, Leo D, et al. (2021) Disruption of the PDZ-domain binding motif of the dopamine transporter uniquely alters nanoscale distribution, dopamine homeostasis and reward motivation. The Journal of Biological Chemistry. 101361
Runegaard AH, Fitzpatrick CM, Woldbye DPD, et al. (2019) Modulating Dopamine Signaling and Behavior with Chemogenetics: Concepts, Progress, and Challenges. Pharmacological Reviews. 71: 123-156
Runegaard AH, Sørensen AT, Fitzpatrick CM, et al. (2018) Locomotor- and Reward-Enhancing Effects of Cocaine Are Differentially Regulated by Chemogenetic Stimulation of Gi-Signaling in Dopaminergic Neurons. Eneuro. 5
Avaliani N, Andersson M, Runegaard AH, et al. (2016) DREADDs suppress seizure-like activity in a mouse model of pharmacoresistant epileptic brain tissue Gene Therapy. 23: 760-766
Møller LL, Sylow L, Gøtzsche CR, et al. (2016) Decreased spontaneous activity in AMPK α2 muscle specific kinase dead mice is not caused by changes in brain dopamine metabolism. Physiology & Behavior. 164: 300-5
Sørensen G, Husum H, Brennum LT, et al. (2014) Addiction-related effects of DOV 216,303 and cocaine: A comparative study in the mouse. Basic & Clinical Pharmacology & Toxicology. 114: 451-9
Xu R, Pankratova S, Christiansen SH, et al. (2013) A peptide antagonist of ErbB receptors, Inherbin3, induces neurite outgrowth from rat cerebellar granule neurons through ErbB1 inhibition. Neurochemical Research. 38: 2550-8
Sørensen G, Wörtwein G, Fink-Jensen A, et al. (2013) Neuropeptide Y Y5 receptor antagonism causes faster extinction and attenuates reinstatement in cocaine-induced place preference. Pharmacology, Biochemistry, and Behavior. 105: 151-6
Dencker D, Weikop P, Sørensen G, et al. (2012) An allosteric enhancer of M4 muscarinic acetylcholine receptor function inhibits behavioral and neurochemical effects of cocaine Psychopharmacology. 224: 277-287
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