Presynaptic Imidazoline Receptors: New Developments in Characterization and Classificationa
- 1 June 1999
- journal article
- review article
- Published by Wiley in Annals of the New York Academy of Sciences
- Vol. 881 (1) , 171-184
- https://doi.org/10.1111/j.1749-6632.1999.tb09356.x
Abstract
Presynaptic imidazoline receptors (IRs) which inhibit norepinephrine (NE) release from sympathetic nerve endings have been identified in cardiovascular tissue of man, rabbit, rat, and guinea pig. They do not belong to one of the classical presynaptic inhibitory receptor classes such as alpha 2-adrenoceptors or H3 histamine receptors, and there is also no relation to I1- and I2-imidazoline binding sites. Segments of human right atrial appendages preincubated with [3H]NE were used to determine unknown pharmacologic properties of the presynaptic IRs. In the presence of 1 microM rauwolscine, S23230, the (-)-enantiomer of the racemic oxazoline derivative S22687 (5-(2(methyl-phenoxy-methyl)-1,3-oxazoline-2-yl)amine) exhibited low potency in inhibiting the electrically evoked [3H]NE release (pIC30% = 4.96), whereas the (+)-enantiomer S23229 and the racemate S22687 were ineffective. The IR-mediated inhibitory effect of the imidazoline BDF 6143 (4-chloro-2-(2-imidazolin-2-ylamino)-isoindoline) and the guanidine aganodine on evoked [3H]NE release from sympathetic nerves in human atrial appendages was counteracted by rauwolscine (with very low potency) and by the cannabinoid CB1-receptor antagonist SR141715A (N-[piperdin-1-yl]-5-[4-chlorophenyl]-2,4-dichlorophenyl]-4- methyl-1H-pyrazole-3-carboxamide). The inhibitory effect of moxonidine on evoked [3H]NE release (which is exclusively mediated via activation of alpha 2-autoreceptors) was antagonized with high potency by rauwolscine, but not by SR141716A. The cannabinoid CB1 receptor agonists CP55,940([(-)-Cis-3-[2-hydroxy-4-(1,1-dimethylheptyl)phenyl] -trans-4- (3-hydroxy-propyl)cyclohexane]) and anandamide inhibited evoked [3H]NE release. Inhibition by CP55,940 and anandamide was abolished by 1 microM SR141716A as well as by 30 microM rauwolscine. In radioligand binding experiments on membranes from human atrial appendages (alpha 2- and sigma-binding sites were masked), cannabinoid receptor ligands and IR agonists displaced the radiolabeled guanidine derivative [3H]DTG (1,3-di-o-tolyguanidine, an agonist at presynaptic IRs) from its binding sites. Comparison of the potencies of these drugs determined in the competition experiments with [3H]DTG with those in inhibiting NE release via activation of the presynaptic IRs in the same tissue revealed a correlation. The present results suggest, e.g., that the presynaptic IRs may have certain binding domains in common with presynaptic cannabinoid receptors or that both receptors are different proteins which interact with each other in an unknown manner.Keywords
This publication has 22 references indexed in Scilit:
- Presynaptic α-autoreceptorsPublished by Springer Nature ,2005
- Presynaptic imidazoline receptors and non‐adrenoceptor[3H]‐idazoxan binding sites in human cardiovascular tissuesBritish Journal of Pharmacology, 1997
- Effects of imidazolines in noradrenaline release in brain: An investigation into their relationship to imidazoline, α2 and H3 receptorsNeurochemistry International, 1997
- Inhibition of exocytotic noradrenaline release by presynaptic cannabinoid CB1 receptors on peripheral sympathetic nervesBritish Journal of Pharmacology, 1996
- α2‐Adrenoceptor‐Independent Inhibition by Imidazolines and Guanidines of Noradrenaline Release from Peripheral, but Not Central Noradrenergic NeuronsAnnals of the New York Academy of Sciences, 1995
- Effect of phenylmethylsulphonyl fluoride on the potency of anandamide as an inhibitor of electrically evoked contractions in two isolated tissue preparationsEuropean Journal of Pharmacology, 1995
- Modulation of Norepinephrine Release in Blood VesselsJournal of Cardiovascular Pharmacology, 1992
- Modulation of Norepinephrine Release in Blood VesselsJournal of Cardiovascular Pharmacology, 1992
- Regulation of noradrenaline release by presynaptic receptor systemsPublished by Springer Nature ,1977
- Preferential blockade of presynaptic α-adrenoceptors by yohimbineEuropean Journal of Pharmacology, 1975