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Synthesis, Docking, 3-D-Qsar, And Biological Assays Of Novel Indole Derivatives Targeting Serotonin Transporter, Dopamine D2 Receptor, And Mao-A Enzyme: In The Pursuit For Potential Multitarget Directed Ligands
Journal
Molecules
Date Issued
2020-10-10
Author(s)
Christopher Cerda-Cavieres
Gabriel Quiroz
Patricio Iturriaga-Vásquez
Julio Rodríguez-Lavado
Jazmín Alarcón-Espósito
Claudio Saitz
Carlos D. Pessoa-Mahana
Hery Chung
Ramiro Araya-Maturana
David Cabezas
Claudia Ojeda-Gómez
Miguel Reyes-Parada
Hernán Pessoa-Mahana
WoS ID
WOS:000585546700001
Abstract
A series of 27 compounds of general structure 2,3-dihydro-benzo[1,4]oxazin-4-yl)-2-{4-[3-(1H-3indolyl)-propyl]-1-piperazinyl}-ethanamides, Series I: 7(a–o) and (2-{4-[3-(1H-3-indolyl)-propyl]-1-piperazinyl}-acetylamine)-N-(2-morfolin-4-yl-ethyl)-fluorinated benzamides Series II: 13(a–l) were synthesized and evaluated as novel multitarget ligands towards dopamine D2 receptor, serotonin transporter (SERT), and monoamine oxidase-A (MAO-A) directed to the management of major depressive disorder (MDD). All the assayed compounds showed affinity for SERT in the nanomolar range, with five of them displaying Ki values from 5 to 10 nM. Compounds 7k, Ki = 5.63 ± 0.82 nM, and 13c, Ki = 6.85 ± 0.19 nM, showed the highest potencies. The affinities for D2 ranged from micro to nanomolar, while MAO-A inhibition was more discrete. Nevertheless, compounds 7m and 7n showed affinities for the D2 receptor in the nanomolar range (7n: Ki = 307 ± 6 nM and 7m: Ki = 593 ± 62 nM). Compound 7n was the only derivative displaying comparable affinities for SERT and D2 receptor (D2/SERT ratio = 3.6) and could be considered as a multitarget lead for further optimization. In addition, docking studies aimed to rationalize the molecular interactions and binding modes of the designed compounds in the most relevant protein targets were carried out. Furthermore, in order to obtain information on the structure–activity relationship of the synthesized series, a 3-D-QSAR CoMFA and CoMSIA study was conducted and validated internally and externally (q2 = 0.625, 0.523 for CoMFA and CoMSIA and r2ncv = 0.967, 0.959 for CoMFA and CoMSIA, respectively).
OCDE Subjects
Quartile (Date Issued)
Q1
License
acceso abierto
Open Science Path