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Naunyn-Schmiedeberg'S Archives of Pharmacology|January 1, 1995
Prostanoid receptors of the EP3 subtype mediate the inhibitory effect of prostaglandin E2 on noradrenaline release in the mouse brain cortexH J Exner, E SchlickerNaunyn-Schmiedeberg'S Archives of Pharmacology|February 1, 1986
Receptor-mediated effects of serotonin and 5-methoxytryptamine on noradrenaline release in the rat vena cava and in the heart of the pithed ratM Göthert, E Schlicker, P KolleckerAgents and Actions|June 1, 1994
Time course of the effects of histamine, thioperamide and EEDQ on H3 receptors in the mouse brainM Detzner, M Kathmann, E SchlickerNaunyn-Schmiedeberg'S Archives of Pharmacology|February 1, 1994
N-methyl-D-aspartate (NMDA)-stimulated noradrenaline (NA) release in rat brain cortex is modulated by presynaptic H3-receptorsK Fink, E Schlicker, M GöthertPsychopharmacology|December 1, 1994
Intermediate affinity and potency of clozapine and low affinity of other neuroleptics and of antidepressants at H3 receptorsM Kathmann, E Schlicker, M GöthertNaunyn-Schmiedeberg'S Archives of Pharmacology|May 1, 1988
Histamine H3 receptor-mediated inhibition of serotonin release in the rat brain cortexE Schlicker, R Betz, M GöthertJournal of Cardiovascular Pharmacology|May 1, 1988
Presynaptic serotonin receptors and alpha-adrenoceptors on central serotoninergic and noradrenergic neurons of normotensive and spontaneously hypertensive ratsE Schlicker, K Classen, M GöthertJournal of Physiology and Pharmacology : an Official Journal of the Polish Physiological Society|July 22, 1998
Histamine H3 receptors--general characterization and their function in the cardiovascular systemB Malinowska, G Godlewski, E SchlickerNaunyn-Schmiedeberg'S Archives of Pharmacology|June 1, 1984
Effects of DU 24565 (6-nitroquipazine) on serotoninergic and noradrenergic neurones of the rat brain and comparison with the effects of quipazineK Classen, M Göthert, E SchlickerNaunyn-Schmiedeberg'S Archives of Pharmacology|November 7, 1999
CB1 receptor density and CB1 receptor-mediated functional effects in rat hippocampus are decreased by an intracerebroventricularly administered antisense oligodeoxynucleotideM Kathmann, U Bauer, E SchlickerPageof 13