P. Crooks et al. “Inhibition of Nicotine Evoked [3H]Dopamine Release by Pyridino N-Substituted Nicotine Analogues: A New Class of Nicotinic Antagonist” Drug Development Research. 1995. 36:91-102. |
L. Teng et al. “Lobeline Displaces [3H] Dihydrotetrabenazine Binding and Release [3H] Dopamine from Rat Striatal Synaptic Vesicles: Comparison with d-Amphetamine” Journal of Neurochemistry. vol. 71. No. 1. Jul. 1998. 258-265. |
L. Teng et al. “Lobeline and Nicotine Evoke [3H] Overflow from Rat Striatal Slices Preloaded with [3H] Dopamine: Differential Inhibition of Synaptosomal and Vesicular [3H] Domapine Uptake” The Journal of Pharmacology and Experimental Therapeutics. Williams & Wilkins. vol. 280. No. 3. 1997. 1432-1444. |
Y. Cheng et al. “Relationship between the inhibition constant (K1) and the concentration of inhibitor which casuses 50 per cent inhibition (I50) of an enzymatic reaction” Biochemical Pharmacology. vol. 22. No. 23. Dec. 1, 1973. 3099-3108. |
Michael Decker et al. “Effects of Lobeline, a Nicotinic Receptor Agonist, on Learning and Memory” Pharmacology Biochemistry and Behavior. vol. 45. 1993. 571-576. |
Carmelo Romano et al. “Stereospecific Nicotine Receptors on Rat Brain Membranes” Science. vol. 210. Nov. 7, 1980. 647-650. |
S. Hamann et al. “Hyperalgesic and Analgesic Actions of Morphine, U50-488, Naltrexone, and (-)-Lobeline in the Rat Brainstem” Pharmacology Biochemistry and Behavior. vol. 47. 1993. 197-201. |
Dennis K. Miller et al. “Lobeline inhibits nicotine-evoked [3H]dopamine overflow from rat striatal slices and nicotine-evoked 86 Rb+ efflux from thalamic synaptosomes” Neuropharmacology. 2000. 39:2654-2662. |
Patrick M. Lippiello et al. “The Binding of L-[3H] Nicotine to a Single Class of High Affinity Sites in Rat Brain Membranes” Molecular Pharmacology. 29:448-454. |
L. Dwoskin et al. “Robust Modulation of [3H] Dopamine Release from Rat Striatal Slices by D-2 Dopamine Receptors” The Journal of Pharmacology and Experimental Therapeutics. 1996. vol. 239. No. 2. 442-453. |
M. Marks et al. “Nicotonic Binding Sites in Rat and Mouse Brain: Comparison of Acetylcholine, Nicotine, and α-Bungarotoxin” Molecular Pharmacology. 30:427-436. |
E. Broussolle et al. “In Vivo Specific Binding of [3H]1-Nicotine in the Mouse Brain” Life Sciences. 1989. vol. 44. 1123-1132. |
L. Dwoskin et al. “(S)-(-)-Cotinine, the Major Brain Metabolite of Nicotine, Stimulates Nicotonic Receptors to Evoke [3H] Dopamine from Rat Striatal Slices in Calcium-Dependent Manner” The Journal of Pharmacology and Experimental Therapeutics. 1999. vol. 288. No. 2. 905-911. |
R.B. Barlow et al. “Relations between structure and nicotine-like activity: X-ray crystal structure analysis of (-)-cytisine and (-)-lobeline hydrochloride and a comparison with (-)-nicotine and other nicotine-like compounds” Br. Journal of Pharmacology. 1989. vol. 98. 799-808. |
P.B.S. Clark & M. Reuben. “Release of [3H]-noradrenaline from rat hippocampal synaptosomes by nicotine: mediation by different nicotinic receptor subtypes from striatal [3H]-dopamine release” British Journal of Pharmacology. 1996. 117. 595-606. |
M. Bradford, “A Rapid and Sensitive Method for the Quantitation of Micogram Quantities of Protein Utilizing the Principle of Protein-Dye Binding” Analytical Biochemistry. 1976. 72. 248-254. |