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AC927
The Pharmacologist 2 0 0 6 December
A Role for Sigma Receptors in Stimulant Self Administration and Addiction
Neuropharmacology and Toxicology of Novel Amphetamine-Type Stimulants
Discovery of E1r: a Novel Positive Allosteric Modulator of Sigma-1 Receptor
University of Groningen Sigma Receptor Ligands Rybczynska, Anna A
A Role for Sigma Receptors in Stimulant Self-Administration and Addiction Jonathan L
The Involvement of Sigma Receptor Modulation in the Antidepressant Effects of Ketamine and the Neurotoxic Actions of Methamphetamine
CV-W Bowen-3-10-19
Discovery of E1r: a Novel Positive Allosteric Modulator of Sigma-1 Receptor
MATTHEW J. ROBSON 7150 MRBIII 465 21St Ave. Nashville, TN 37232 (315) 246-8879
[email protected]
Meeting Program
Sigma-2 Receptor-Mediated Cytotoxicity and Calcium Signaling: Evidence for Bifurcating Pathways
Metabolic Stability and Pharmacokinetics in Lead Optimization of Potential Anti-Psychostimulant Pharmacotherapies
NIH Public Access Author Manuscript Expert Opin Ther Targets
Evaluation of Novel Sigma Receptor Antagonists Against METH- Induced Neurotoxicity: in Vivo and in Vitro Studies
Methamphetamine Induces Dopamine Release in the Nucleus Accumbens Through a Sigma Receptor-Mediated Pathway
NIDA - Director's Report - May, 2011
September, 2009
Top View
M100907 and BD 1047 Attenuate the Acute Toxic Effects Of
University of Groningen Sigma Receptor Ligands Rybczynska, Anna A
Potential Molecular Mechanisms on the Role of the Sigma-1 Receptor in the Action of Cocaine and Methamphetamine
Research.Pdf (421.1Kb)
Potential Applications for Sigma Receptor Ligands in Cancer Diagnosis and Therapy☆
Role for Reactive Oxygen Species in Methamphetamine Modulation of Dopamine Release in the Striatum
HHS Public Access Author Manuscript
The Activity of Selective Sigma-1 Receptor Ligands in Seizure Models in Vivo
Pharmacokinetic Evaluation of a Novel Compound, Sn79, a Putative Sigma-2 Receptor Antagonist, by Intravenous and Oral Administration in Rats
AC927, a Sigma Ligand, Blocks Methamphetamine-Induced Release