Janet L. Neisewander

Affiliations: 
Arizona State University, Tempe, AZ, United States 
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"Janet Neisewander"
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Publications

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Namba MD, Phillips MN, Neisewander JL, et al. (2022) Nuclear factor kappa B signaling within the rat nucleus accumbens core sex-dependently regulates cue-induced cocaine seeking and matrix metalloproteinase-9 expression. Brain, Behavior, and Immunity. 102: 252-265
Scott SN, Garcia R, Powell GL, et al. (2021) 5-HT receptor agonist attenuates cocaine self-administration after protracted abstinence and relapse in rats. Journal of Psychopharmacology (Oxford, England). 2698811211019279
Namba MD, Leyrer-Jackson JM, Nagy EK, et al. (2021) Neuroimmune Mechanisms as Novel Treatment Targets for Substance Use Disorders and Associated Comorbidities. Frontiers in Neuroscience. 15: 650785
Vannan A, Powell GL, Dell'Orco M, et al. (2021) microRNA regulation related to the protective effects of environmental enrichment against cocaine-seeking behavior. Drug and Alcohol Dependence. 221: 108585
Garcia R, Le T, Scott SN, et al. (2020) Preclinical support for the therapeutic potential of zolmitriptan as a treatment for cocaine use disorders. Translational Psychiatry. 10: 266
Powell GL, Namba MD, Vannan A, et al. (2020) The Long-Acting D3 Partial Agonist MC-25-41 Attenuates Motivation for Cocaine in Sprague-Dawley Rats. Biomolecules. 10
Powell GL, Vannan A, Bastle RM, et al. (2020) Environmental enrichment during forced abstinence from cocaine self-administration opposes gene network expression changes associated with the incubation effect. Scientific Reports. 10: 11291
Larrimore KE, Kannan L, Kendle RP, et al. (2020) A plant-derived cocaine hydrolase prevents cocaine overdose lethality and attenuates cocaine-induced drug seeking behavior. Progress in Neuro-Psychopharmacology & Biological Psychiatry. 109961
Gao M, Der-Ghazarian TS, Li S, et al. (2020) Dual Effect of 5-HT Receptors on Dopamine Neurons in Ventral Tegmental Area: Implication for the Functional Switch After Chronic Cocaine Exposure. Biological Psychiatry
Ma ZG, Jiang N, Huang YB, et al. (2019) Cocaine potently blocks neuronal αβ nicotinic acetylcholine receptors in SH-SY5Y cells. Acta Pharmacologica Sinica
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