scieee AI-readable full text Open interactive document viewer

Comparative study of dopaminergic activity of tetrahydro-1H-[3]-benzazepines and their precursors

Valpuesta-Fernández, María,Lucena-Serrano, Cristina,Rivera-Ramírez, Alicia,Contreras-Cáceres, Rafael,López-Romero, Juan Manuel,Díaz-Morilla, Amelia

Abstract

The discovery of the tetrahydro-1H-[3]-benzazepine SCH23390 [1], represented one of the most important advances in the study of dopaminergic receptors due to their behavior as a selective D1 receptor antagonist. The high affinity and selectivity of this tetrahydro-1H-[3]-benzazepine has led to the search for new structures because of their potential dopaminergic activity, especially 1-aryl-substituted tetrahydro-1H-[3]-benzazepines. Furthermore, their precursors, the tetrahydroisoquinolines 1-substituted have shown to have activity for D1 and D2 dopaminergic receptors.[2] We have carried out the synthesis of tetrahydro-1H-[3]-benzazepines 1,2-di-substituted by Stevens rearrangement (SR) on tetrahydroisoquinolinium salts. Stevens rearrangement is an efficient regio- and diastereoselective synthetic methodology. [3a,b] As part of our studies, we have performed the synthesis of benzazepines with modifications at the C-1 and C-2 positions with chlorine and hydroxyl groups at A-ring which is an important factor to modulate affinity at dopaminergic receptors. The interaction of these molecules with D1 and D2 dopaminergic receptors have been studied to establish a structure-activity relationship by radioligand binding assays.

Full text

Comparative study of dopaminergic activity of tetrahydro-1H-[3]-benzazepines and their precursors Ana Lucena-Serrano (1), Cristina Lucena-Serrano (1), Alicia Rivera (2), Rafael Contreras-Cáceres (1), Juan M. López-Romero (1), Amelia Díaz (1), María Valpuesta (1) (1) Department of Organic Chemistry, Faculty of Science, University of Málaga, (2) Department of Cell Biology, Faculty of Science, University of Málaga Campus de Teatinos s/n, 29071 Málaga Malaga Spain Email: [email protected] Presenting author: Ana Lucena-Serrano Type: Poster Theme: H. Chemistry in the Life Sciences Topic: H1. Drug Discovery and Chemical Biology Keywords: Tetrahydroisoquinolines, Benzazepines, Dopaminergic activity, Dopaminergic receptors SUMMARY: The discovery of the tetrahydro-1H-[3]-benzazepine SCH23390 [1], represented one of the most important advances in the study of dopaminergic receptors due to their behavior as a selective D1 receptor antagonist. The high affinity and selectivity of this tetrahydro-1H-[3]-benzazepine has led to the search for new structures because of their potential dopaminergic activity, especially 1-arylsubstituted tetrahydro-1H-[3]-benzazepines. Furthermore, their precursors, the tetrahydroisoquinolines 1-substituted have shown to have activity for D1 and D2 dopaminergic receptors.[2] We have carried out the synthesis of tetrahydro-1H-[3]-benzazepines 1,2-di-substituted by Stevens rearrangement (SR) on tetrahydroisoquinolinium salts. Stevens rearrangement is an efficient regioand diastereoselective synthetic methodology. [3a,b] As part of our studies, we have performed the synthesis of benzazepines with modifications at the C-1 and C-2 positions with chlorine and hydroxyl groups at A-ring which is an important factor to modulate affinity at dopaminergic receptors. The interaction of these molecules with D1 and D2 dopaminergic receptors have been studied to establish a structure-activity relationship by radioligand binding assays. [1] a) Bourne, J. A., CNS Drug Review 2001, 7, 399–414. b) Gold, E. H.; Chang, W. K., U. S. Patent 4284555, 1981. [2] Suvire, F. D.; Andreu, I; Bermejo, A.; Zamora, M. A.; Cortes, D.; Enriz, R. D., J. Mol. Struc. TEOCHEM 666-667 2003, 109-116. [3] a) Valpuesta, M.; Ariza, M.; Díaz, A.; Suau, R. Eur. J. Org. Chem. 2010, 23, 4393-4401. b) Ariza, M.; Díaz, A.; Suau, R.; Valpuesta, M. Eur. J. Org. Chem. 2011, 32, 6507-6518.