Murray et al., “Interaction of Dextrorotary Opioids with Phencyclidine Recognition Sites in Rat Brain Membranes,” Life Sci., 34:1899-1911 (1984). |
Nishikawa et al., “Evidence for, and Nature of, the Tonic Inhibitory Influence of Habenulointerpeduncular Pathways upon Cerebral Dopaminergic Transmission in the Rat,” Brain Res., 373:324-336 (1986). |
Koyuncuoglu et al., “The Treatment of Heroin Addicts with Dextromethorphan: A Double-blind Comparison of Dextromethrophan with Chlorpromazine,” Int. J. Clin. Pharmacol. Ther., 28:147-152 (1990). |
Glick et al., “Effects and Aftereffects of Ibogaine on Morphine Self-administration in Rats,” Europ. J. Pharmacol., 195:341-345 (1991). |
Flores et al., “A Subtype of Nicotinic Cholinergic Receptor in Rat Brain Is Comprised of 4 and 2 Subunits and Is Up-regulated by Chronic Nicotine Treatment,” Mol. Pharmacol., 41:31-37 (1992). |
Koyuncuoglu, “The Combination of Tizanidine Markedly Improves the Treatment with Dextromethorphan of Heroin Addicted Outpatients,” Int. J. Clin. Pharmacol. Ther., 33:13-19 (1995). |
Popik et al., “NMDA Antagonist Properties of the Putative Antiaddictive Drug, Ibogaine,” J. Pharmacol. Exp. Ther., 275-753-760 (1995). |
Sweetnam et al., “Receptor Binding Profile Siggest Multiple Mechanisms of Action Are Responsible for Ibogaine's Putative Anti-addictive Activity,” Psychopharmacology, 118:369-376 (1995). |
Chen et al., “Ibogaine Block of the Nmda Receptor: in Vitro and in Vivo Studies,” Neuropharmacology, 35:423-431 (1996). |
Glick et al., “18-Methoxycoronaridine, a Non-toxic Iboga Alkaloid Congener: Effects of Morphine and Cocaine Self-administration and on Mesolimbic Dopamine Release in Rats,” Brain Res., 719:29-35 (1996). |
Badio et al., “Ibagaine: A Potent Noncompetitive Blocker of Ganglionic/Neuronal Nicotinic Receptors,” Molec. Pharmacol., 51:1-5 (1997). |
Pulvirenti et al., “Dextromethorphan Reduces Intravenous Cocaine Self-administration in the Rat,” Eur. J. Pharmacol., 321:279-283 (1997). |
Rezvani et al., “Attenuation of Alcohol Consumption by a Novel Non-toxic Ibogaine Analog (18-Methoxycoronaridine) in Alcohol Preferring Rats,” Pharmacol. Biochem. Behav., 58:615-619 (1997). |
Ebert et al., “Opioid Analgesics as Noncompetitive N-methyl-d-aspartate (NMDA) Antagonists,” Biochem. Pharmacol., 56:533-559 (1998). |
Glick et al., “Mechanisms of Anti-addictive Actions of Ibogaine,” Ann. N.Y. Acad. Sci., 844, 214-226 (1998). |
Mah et al., “Ibogaine Acts at the Nicotinic Acetylcholine Receptor to Inhibit Catecholamine Release,” Brain Res., 797:173-180 (1998). |
Fryer et al., “Noncompetitive Functional Inhibition at Diverse , Human Nicotinic Acetylcholine Receptor Subtypes by Bupropion, Phencyclidine, and Ibogaine,” J. Pharmacol. Exp. Ther., 288:88-92 (1999). |
Lukas et al., “International Union of Pharmacology, XX, Current Status of the Nomenclature for Nicotinic Acetylcholine Receptors and Their Subunits,” Pharmacol. Rev., 51:397-401 (1999). |
Maisonneuve et al., “Attenuation of the Reinforcing Efficacy of Morphine by 18-Methoxycoronaridine,” Euro. J. Pharmacol., 383:15-21 (1999). |
Quick et al., “3 4 Subunit-containing Nicotinic Receptors Dominate Function in Rat Medial Habenula Neurons,” Neuropharmacology, 38:769-783 (1999). |
Reid et al., “A Nicotinic Antagonist, Mecamylamine, Reduces Cue-induced Craving in Cocaine-dependent Subjects,” Neuropsychopharmacology, 20:297-307 (1999). |
Glick et al., “18-MC Reduces Methamphetamine and Nicotine Self-Administration in Rats,” NeuroReport, 11:2013-2015 (2000). |
Glick et al., “18-Methoxycoronaridine (18-MC) and Ibogaine: Comparison of Anti-addictive Efficacy, Toxicity and Mechanisms of Action,” Ann. N.Y. Acad. Sci., 914:369-387 (2000). |
Glick et al., “Development of Novel Medication for Drug Addicition: The Legacy of an African Shrub,” Ann. N.Y. Acad. Sci. , 909:88-103 (2000). |
Hernandez et al., “Dextromethorphan and its Metabolite Dextrorphan Block 3 4 Neuronal Nicotinic Receptors,” J. Pharmacol. Exp. Ther., 293:962-967 (2000). |
Jun et al., “Dextromethorphan Alters Methamphetamine Self-Administration in the Rat,” Pharmacol. Biochem. Behav., 67:405-409 (2000). |
Levin et al., “Mecamylamine Preferentially Inhibits Cocaine Versus Food Self-administration in Rats,” Soc. Neurosci. Abstr., 26:1821 (2000). |
Glick et al., “Comparative Effects of Dextromethorphan and Dextrorphan on Morphine, Methamphetamine, and Nicotine Self-administration in Rats,” Europ. J. Pharmacol., 422:87-90 (2001). |
Klink et al., “Molecular and Physiological Diversity of Nicotinic Acetylcholine Receptors in the Midbrain Dopaminergic Nuclei, ” J. Neurosci., 21:1452-1463 (2001). |
Papke et al., “Analysis of Mecamylamine Steroisomers on Human Nicotinic Receptor Subtypes,” J. Pharmacol. Exp. Ther., 297:646-656 (2001). |