Gianluigi Tanda
Gianluigi Tanda
Staff scientist
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Effects of nicotine on the nucleus accumbens and similarity to those of addictive drugs
FE Pontieri, G Tanda, F Orzi, GD Chiara
Nature 382 (6588), 255-257, 1996
Cannabinoid and Heroin Activation of Mesolimbic Dopamine Transmission by a Common µ1 Opioid Receptor Mechanism
G Tanda, FE Pontieri, GD Chiara
Science 276 (5321), 2048-2050, 1997
Intravenous cocaine, morphine, and amphetamine preferentially increase extracellular dopamine in the" shell" as compared with the" core" of the rat nucleus accumbens.
FE Pontieri, G Tanda, G Di Chiara
Proceedings of the National Academy of Sciences 92 (26), 12304-12308, 1995
Blockade of the noradrenaline carrier increases extracellular dopamine concentrations in the prefrontal cortex: evidence that dopamine is taken up in vivo by noradrenergic …
E Carboni, GL Tanda, R Frau, GD Chiara
Journal of neurochemistry 55 (3), 1067-1070, 1990
Self-administration behavior is maintained by the psychoactive ingredient of marijuana in squirrel monkeys
G Tanda, P Munzar, SR Goldberg
Nature neuroscience 3 (11), 1073-1074, 2000
Increase of extracellular dopamine in the prefrontal cortex: a trait of drugs with antidepressant potential?
G Tanda, E Carboni, R Frau, G Di Chiara
Psychopharmacology 115, 285-288, 1994
Cannabinoids: reward, dependence, and underlying neurochemical mechanisms—a review of recent preclinical data
G Tanda, SR Goldberg
Psychopharmacology 169, 115-134, 2003
Reciprocal changes in prefrontal and limbic dopamine responsiveness to aversive and rewarding stimuli after chronic mild stress: implications for the psychobiology of depression
G Di Chiara, P Loddo, G Tanda
Biological psychiatry 46 (12), 1624-1633, 1999
Drug addiction as a disorder of associative learning: role of nucleus accumbens shell/extended amygdala dopamine
G DI CHIARA, G Tanda, V BASSAREO, F Pontieri, E Acquas, S FENU, ...
Annals of the New York Academy of Sciences 877 (1), 461-485, 1999
Self-administration of Δ9-tetrahydrocannabinol (THC) by drug naive squirrel monkeys
Z Justinova, G Tanda, GH Redhi, SR Goldberg
Psychopharmacology 169, 135-140, 2003
A dopamine‐μ1 opioid link in the rat ventral tegmentum shared by palatable food (Fonzies) and non‐psychostimulant drugs of abuse
G Tanda, G Di Chiara
European journal of neuroscience 10 (3), 1179-1187, 1998
Anandamide administration alone and after inhibition of fatty acid amide hydrolase (FAAH) increases dopamine levels in the nucleus accumbens shell in rats
M Solinas, Z Justinova, SR Goldberg, G Tanda
Journal of neurochemistry 98 (2), 408-419, 2006
Differential effects of caffeine on dopamine and acetylcholine transmission in brain areas of drug-naive and caffeine-pretreated rats
E Acquas, G Tanda, G Di Chiara
Neuropsychopharmacology 27 (2), 182-193, 2002
Contribution of blockade of the noradrenaline carrier to the increase of extracellular dopamine in the rat prefrontal cortex by amphetamine and cocaine
G Tanda, FE Pontieri, R Frau, G Di Chiara
European Journal of Neuroscience 9 (10), 2077-2085, 1997
The endogenous cannabinoid anandamide has effects on motivation and anxiety that are revealed by fatty acid amide hydrolase (FAAH) inhibition
M Scherma, J Medalie, W Fratta, SK Vadivel, A Makriyannis, D Piomelli, ...
Neuropharmacology 54 (1), 129-140, 2008
Fatty acid amide hydrolase (FAAH) inhibition enhances memory acquisition through activation of PPAR-α nuclear receptors
C Mazzola, J Medalie, M Scherma, LV Panlilio, M Solinas, G Tanda, ...
Learning & memory 16 (5), 332-337, 2009
Pharmacological profile of dopamine receptor agonists as studied by brain dialysis in behaving rats.
A Imperato, G Tanda, R Frau, G Di Chiara
Journal of Pharmacology and Experimental Therapeutics 245 (1), 257-264, 1988
Ethanol as a neurochemical surrogate of conventional reinforcers: the dopamine-opioid link
G Di Chiara, E Acquas, G Tanda
Alcohol 13 (1), 13-17, 1996
On the preferential release of dopamine in the nucleus accumbens by amphetamine: further evidence obtained by vertically implanted concentric dialysis probes
G Di Chiara, G Tanda, R Frau, E Carboni
Psychopharmacology 112, 398-402, 1993
The neurobiology of modafinil as an enhancer of cognitive performance and a potential treatment for substance use disorders
M Mereu, A Bonci, AH Newman, G Tanda
Psychopharmacology 229, 415-434, 2013
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