Exploring the Neuroleptic Substituent in Octoclothepin: Potential Ligands for Positron Emission Tomography with Subnanomolar Affinity for α1-Adrenoceptors

Journal of Medicinal Chemistry
2010.0

Abstract

A series of 1-(10,11-dihydrodibenzo[b,f]thiepin-10-yl)-4-methylpiperazine analogues substituted in the 8-position of the 10,11-dihydrodibenzo[b,f]thiepine scaffold with aryl, heteroaryl, amine, and amide substituents are described. The compounds were designed using the previously reported Liljefors-Bøgesø pharmacophore model for dopamine D(2) and α(1)-adrenoceptor antagonists, with the aim of obtaining selective α(1)-adrenoceptor antagonists suitable for development as radioligands for imaging of central α(1)-adrenoceptors by positron emission tomography. Sixteen aryl and heteroaryl substituted octoclothepin analogues were prepared by a convergent synthesis via coupling of 1-methyl-4-(8-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)-10,11-dihydrodibenzo[b,f]thiepin-10-yl)piperazine with aryl and heteroaryl halides under palladium catalysis. The most selective compound obtained, (S)-N-((11-(4-methylpiperazin-1-yl)-10,11-dihydrodibenzo[b,f]thiepin-2-yl)methyl)isobutyramide (S)-35, showed a similar subnanomolar affinity compared to α(1a), α(1b), and α(1d)-adrenoceptors and a selectivity ratio of 20, 440, and 20 with respect to D(2), 5-HT(2C), and H(1) receptors, respectively.

Knowledge Graph

Similar Paper

Exploring the Neuroleptic Substituent in Octoclothepin: Potential Ligands for Positron Emission Tomography with Subnanomolar Affinity for α<sub>1</sub>-Adrenoceptors
Journal of Medicinal Chemistry 2010.0
Design and synthesis of selective α1B adrenoceptor antagonists
Bioorganic &amp; Medicinal Chemistry Letters 2006.0
Phenylpiperazinylalkylamino Substituted Pyridazinones as Potent α<sub>1</sub> Adrenoceptor Antagonists
Journal of Medicinal Chemistry 2001.0
Synthesis and Structure−Affinity Relationship Investigations of 5-Heteroaryl-Substituted Analogues of the Antipsychotic Sertindole. A New Class of Highly Selective α<sub>1</sub>Adrenoceptor Antagonists
Journal of Medicinal Chemistry 2003.0
α<sub>1</sub>-Adrenoceptor Antagonists. 6. Structural Optimization of Pyridazinone−Arylpiperazines. Study of the Influence on Affinity and Selectivity of Cyclic Substituents at the Pyridazinone Ring and Alkoxy Groups at the Arylpiperazine Moiety
Journal of Medicinal Chemistry 2003.0
Pharmacophore models based studies on the affinity and selectivity toward 5-HT1A with reference to α1-adrenergic receptors among arylpiperazine derivatives of phenytoin
Bioorganic &amp; Medicinal Chemistry 2011.0
Synthesis and biological affinity of new imidazo- and indol-arylpiperazine derivatives: Further validation of a pharmacophore model for α1-adrenoceptor antagonists
Bioorganic &amp; Medicinal Chemistry Letters 2008.0
Discovery of novel α1-adrenoceptor ligands based on the antipsychotic sertindole suitable for labeling as PET ligands
Bioorganic &amp; Medicinal Chemistry 2013.0
New Substituted 1-(2,3-Dihydrobenzo[1,4]dioxin-2-ylmethyl)piperidin-4-yl Derivatives with α<sub>2</sub>-Adrenoceptor Antagonist Activity
Journal of Medicinal Chemistry 2000.0
Synthesis and Pharmacological Evaluation of 1-[(1,2-Diphenyl-1H-4-imidazolyl)methyl]-4-phenylpiperazines with Clozapine-Like Mixed Activities at Dopamine D<sub>2</sub>, Serotonin, and GABA<sub>A</sub>Receptors
Journal of Medicinal Chemistry 2002.0