Mariella De Biasi, Ph.D.

Psychiatry University of Pennsylvania, Philadelphia, PA, United States 
Addiction, Nicotinic Acetylcholine Receptors
"Mariella De Biasi"
Mean distance: 17.89 (cluster 11)
Cross-listing: BCM Tree


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Mario G Oyola grad student Baylor
Erika Perez grad student 2006- Baylor
Yanfen Teng grad student 2006- Baylor
Ian A. McLaughlin grad student 2011- Baylor
Dang Q. Dao grad student 2005-2013 Baylor
Khosrow Rezvani post-doc Baylor
Ramiro Salas post-doc Baylor


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Ron S. Broide collaborator Baylor
John A. Dani collaborator Baylor
BETA: Related publications


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Teng Y, Rezvani K, De Biasi M. (2015) UBXN2A regulates nicotinic receptor degradation by modulating the E3 ligase activity of CHIP. Biochemical Pharmacology. 97: 518-30
Perez EE, De Biasi M. (2015) Assessment of affective and somatic signs of ethanol withdrawal in C57BL/6J mice using a short-term ethanol treatment. Alcohol (Fayetteville, N.Y.). 49: 237-43
Perez E, Quijano-Cardé N, De Biasi M. (2015) Nicotinic Mechanisms Modulate Ethanol Withdrawal and Modify Time Course and Symptoms Severity of Simultaneous Withdrawal from Alcohol and Nicotine. Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology
McLaughlin I, Dani JA, De Biasi M. (2015) Nicotine withdrawal. Current Topics in Behavioral Neurosciences. 24: 99-123
Jackson KJ, Muldoon PP, De Biasi M, et al. (2015) New mechanisms and perspectives in nicotine withdrawal. Neuropharmacology. 96: 223-34
Teng Y, Rezvani K, De Biasi M. (2015) UBXN2A regulates nicotinic receptor degradation by modulating the E3 ligase activity of CHIP Biochemical Pharmacology
Acevedo-Rodriguez A, Zhang L, Zhou F, et al. (2014) Cocaine inhibition of nicotinic acetylcholine receptors influences dopamine release. Frontiers in Synaptic Neuroscience. 6: 19
De Biasi M, McLaughlin I, Perez EE, et al. (2014) Scientific overview: 2013 BBC plenary symposium on tobacco addiction. Drug and Alcohol Dependence. 141: 107-17
Muldoon PP, Jackson KJ, Perez E, et al. (2014) The α3β4* nicotinic ACh receptor subtype mediates physical dependence to morphine: mouse and human studies. British Journal of Pharmacology. 171: 3845-57
Dao DQ, Perez EE, Teng Y, et al. (2014) Nicotine enhances excitability of medial habenular neurons via facilitation of neurokinin signaling. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 34: 4273-84
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