Back to Search
Start Over
Prazosin-related compounds. Effect of transforming the piperazinylquinazoline moiety into an aminomethyltetrahydroacridine system on the affinity for alpha1-adrenoreceptors.
- Source :
-
Journal of medicinal chemistry [J Med Chem] 2003 Nov 06; Vol. 46 (23), pp. 4895-903. - Publication Year :
- 2003
-
Abstract
- In a search for structurally new alpha(1)-adrenoreceptor (alpha(1)-AR) antagonists, prazosin (1)-related compounds 2-11 were synthesized and their affinity profiles were assessed by functional experiments in isolated rat vas deferens (alpha(1A)), spleen (alpha(1B)), and aorta (alpha(1D)) and by binding assays in CHO cells expressing human cloned alpha(1)-AR subtypes. Transformation of the piperazinylquinazoline moiety of 1 into an aminomethyltetrahydroacridine system afforded compound 2, endowed with reduced affinity, in particular for the alpha(1A)-AR subtype. Then, to investigate the optimal features of the tricyclic moiety, the aliphatic ring of 2 was modified by synthesizing the lower and higher homologues 3 and 4. An analysis of the pharmacological profile, together with a molecular modeling study, indicated the tetrahydroacridine moiety as the most promising skeleton for alpha(1)-antagonism. Compounds 5-8, where the replacement of the furoyl group of 2 with a benzoyl moiety afforded the possibility to evaluate the effect of the substituent trifluoromethyl on receptor binding, resulted, except for 7, in a rather surprising selectivity toward alpha(1B)-AR, in particular vs the alpha(1A) subtype. Also the insertion of the 2,6-dimethoxyphenoxyethyl function of WB 4101 on the tetrahydroacridine skeleton of 2, and/or the replacement of the aromatic amino function with a hydroxy group, affording derivatives 9-11, resulted in alpha(1B)-AR selectivity also vs the alpha(1D) subtype. On the basis of these results, the tetrahydroacridine moiety emerged as a promising tool for the characterization of the alpha(1)-AR, owing to the receptor subtype selectivity achieved by an appropriate modification of the lateral substituents.
- Subjects :
- Acetylcholinesterase chemistry
Adrenergic alpha-Antagonists chemistry
Adrenergic alpha-Antagonists pharmacology
Aminoacridines chemistry
Aminoacridines pharmacology
Animals
Aorta, Thoracic drug effects
Aorta, Thoracic physiology
CHO Cells
Cholinesterase Inhibitors chemical synthesis
Cholinesterase Inhibitors chemistry
Cholinesterase Inhibitors pharmacology
Cricetinae
Dioxanes pharmacology
Humans
In Vitro Techniques
Male
Models, Molecular
Molecular Conformation
Muscle Contraction drug effects
Muscle, Smooth drug effects
Muscle, Smooth physiology
Prazosin pharmacology
Radioligand Assay
Rats
Rats, Wistar
Receptors, Adrenergic, alpha-1 drug effects
Spleen drug effects
Spleen physiology
Structure-Activity Relationship
Vas Deferens drug effects
Vas Deferens physiology
Adrenergic alpha-Antagonists chemical synthesis
Aminoacridines chemical synthesis
Piperazines chemistry
Prazosin chemistry
Receptors, Adrenergic, alpha-1 metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 0022-2623
- Volume :
- 46
- Issue :
- 23
- Database :
- MEDLINE
- Journal :
- Journal of medicinal chemistry
- Publication Type :
- Academic Journal
- Accession number :
- 14584940
- Full Text :
- https://doi.org/10.1021/jm030952q