Gajanan P Shelkar

Creighton University, Omaha, NE, United States 
Neuroscience, Addiction, NMDA, VTA
"Gajanan Shelkar"
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Liu J, Shelkar GP, Zhao F, et al. (2019) Modulation of burst firing of neurons in nucleus reticularis of the thalamus by GluN2C-containing NMDA receptors. Molecular Pharmacology
Liu J, Gandhi PJ, Pavuluri R, et al. (2018) Glutamate delta-1 receptor regulates cocaine-induced plasticity in the nucleus accumbens. Translational Psychiatry. 8: 219
Ravikrishnan A, Gandhi PJ, Shelkar GP, et al. (2018) Region-specific Expression of NMDA Receptor GluN2C Subunit in Parvalbumin-Positive Neurons and Astrocytes: Analysis of GluN2C Expression using a Novel Reporter Model. Neuroscience
Sagarkar S, Bhamburkar T, Shelkar G, et al. (2017) Minimal traumatic brain injury causes persistent changes in DNA methylation at BDNF gene promoters in rat amygdala: A possible role in anxiety-like behaviors. Neurobiology of Disease
Somalwar AR, Shelkar GP, Subhedar NK, et al. (2017) The role of neuropeptide CART in the lateral hypothalamic-ventral tegmental area (LH-VTA) circuit in motivation. Behavioural Brain Research. 317: 340-349
Singh U, Kumar S, Shelkar GP, et al. (2016) Transient receptor potential vanilloid (TRPV3) in the ventral tegmental area of rat: Role in modulation of the mesolimbic-dopamine reward pathway. Neuropharmacology
Upadhya MA, Shelkar GP, Subhedar NK, et al. (2016) CART modulates the effects of levodopa in rat model of Parkinson's disease. Behavioural Brain Research. 301: 262-72
Borkar CD, Upadhya MA, Shelkar GP, et al. (2016) Neuropeptide Y system in accumbens shell mediates ethanol self-administration in posterior ventral tegmental area. Addiction Biology. 21: 766-75
Shelkar GP, Kumar S, Singru PS, et al. (2015) Noradrenergic inputs from locus coeruleus to posterior ventral tegmental area are essential to support ethanol reinforcement. Addiction Biology
Shelkar GP, Kale AD, Singh U, et al. (2015) Alpha-melanocyte stimulating hormone modulates ethanol self-administration in posterior ventral tegmental area through melanocortin-4 receptors. Addiction Biology. 20: 302-15
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