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Authordc.contributor.authorRodríguez Lavado, Julio 
Authordc.contributor.authorGallardo Garrido, Carlos 
Authordc.contributor.authorMallea Catalán, Michael 
Authordc.contributor.authorBustos, Víctor 
Authordc.contributor.authorOsorio, Rodrigo 
Authordc.contributor.authorHödar Salazar, Martín 
Authordc.contributor.authorChung, Hery 
Authordc.contributor.authorAraya Maturana, Ramiro 
Authordc.contributor.authorLorca, Marcos 
Authordc.contributor.authorPessoa Mahana, C. David 
Authordc.contributor.authorMella Raipán, Jaime 
Authordc.contributor.authorSaitz Barría, Claudio 
Authordc.contributor.authorJaque Olmedo, Pablo 
Authordc.contributor.authorReyes Parada, Miguel 
Authordc.contributor.authorIturriaga-Vásquez, Patricio 
Authordc.contributor.authorPessoa Mahana, Hernán 
Admission datedc.date.accessioned2020-07-21T14:31:31Z
Available datedc.date.available2020-07-21T14:31:31Z
Publication datedc.date.issued2020
Cita de ítemdc.identifier.citationEuropean Journal of Medicinal Chemistry 198 (2020) 112368es_ES
Identifierdc.identifier.other10.1016/j.ejmech.2020.112368
Identifierdc.identifier.urihttps://repositorio.uchile.cl/handle/2250/176046
Abstractdc.description.abstractDuring the last decade, the one drug-one target strategy has resulted to be inefficient in facing diseases with complex ethiology like Alzheimer's disease and many others. In this context, the multitarget paradigm has emerged as a promising strategy. Based on this consideration, we aim to develop novel molecules as promiscuous ligands acting in two or more targets at the same time. For such purpose, a new series of indolylpropyl-piperazinyl oxoethyl-benzamido piperazines were synthesized and evaluated as multitarget-directed drugs for the serotonin transporter (SERT) and acetylcholinesterase (AChE). The ability to decrease beta-amyloid levels as well as cell toxicity of all compounds were also measured. In vitro results showed that at least four compounds displayed promising activity against SERT and AChE. Compounds 18 and 19 (IC50 = 3.4 and 3.6 mu M respectively) exhibited AChE inhibition profile in the same order of magnitude as donepezil (DPZ, IC50 = 2.17 mu M), also displaying nanomolar affinity in SERT. Moreover, compounds 17 and 24 displayed high SERT affinities (IC50 = 9.2 and 1.9 nM respectively) similar to the antidepressant citalopram, and significant micromolar AChE activity at the same time. All the bioactive compounds showed a low toxicity profile in the range of concentrations studied. Molecular docking allowed us to rationalize the binding mode of the synthesized compounds in both targets. In addition, we also show that compounds 11 and 25 exhibit significant beta-amyloid lowering activity in a cell-based assay, 11 (50% inhibition, 10 mu M) and 25 (35% inhibition, 10 mu M).es_ES
Patrocinadordc.description.sponsorshipComisión Nacional de Investigación Cientifica y Tecnológica (CONICYT) CONICYT FONDECYT 1170269 1170662 3170264 FONDEQUIP EQM 160042 Conicyt-PFCHA/Doctorado Nacional 2018-21180427 Fisher Foundation for Alzheimer's Researches_ES
Lenguagedc.language.isoenes_ES
Publisherdc.publisherElsevieres_ES
Type of licensedc.rightsAttribution-NonCommercial-NoDerivs 3.0 Chile*
Link to Licensedc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/cl/*
Sourcedc.sourceEuropean Journal of Medicinal Chemistryes_ES
Keywordsdc.subjectAlzheimer’s diseasees_ES
Keywordsdc.subjectMultitargetes_ES
Keywordsdc.subjectDual-active compoundses_ES
Keywordsdc.subjectAChEes_ES
Keywordsdc.subjectSERTes_ES
Keywordsdc.subjectIndole derivativeses_ES
Títulodc.titleSynthesis, in vitro evaluation and molecular docking of a new class of indolylpropyl benzamidopiperazines as dual AChE and SERT ligands for Alzheimer’s diseasees_ES
Document typedc.typeArtículo de revistaes_ES
dcterms.accessRightsdcterms.accessRightsAcceso Abierto
Catalogueruchile.catalogadorctces_ES
Indexationuchile.indexArtículo de publicación ISI
Indexationuchile.indexArtículo de publicación SCOPUS


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Attribution-NonCommercial-NoDerivs 3.0 Chile
Except where otherwise noted, this item's license is described as Attribution-NonCommercial-NoDerivs 3.0 Chile