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1.
J Enzyme Inhib Med Chem ; 32(1): 214-230, 2017 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-28114832

RESUMEN

The 5-hydroxytryptamine (5-HT1A) receptors represent an attractive target in drug discovery. In particular, 5-HT1A agonists and partial agonists are deeply investigated for their potential role in the treatment of anxiety, depression, ischaemic brain disorder and more recently, of pain. On the other hand, 5-HT1A antagonists have been revealed promising compounds in cognition disorders and, lately, in cancer. Thus, the discovery of 5HT1A ligands is nowadays an appealing research activity in medicinal chemistry. In this work, Comparative Molecular Fields Analysis (CoMFA) and Comparative Molecular Similarity Index Analysis (CoMSIA) were applied on an in-house library of 5-HT1A ligands bearing different chemical scaffolds in order to elucidate their affinity and selectivity for the target. Following this procedure, a number of structural modifications have been drawn for the development of much more effective 5-HT1AR ligands. [Formula: see text].


Asunto(s)
Receptor de Serotonina 5-HT1A/metabolismo , Antagonistas del Receptor de Serotonina 5-HT1/química , Antagonistas del Receptor de Serotonina 5-HT1/farmacología , Relación Dosis-Respuesta a Droga , Humanos , Ligandos , Modelos Moleculares , Estructura Molecular , Relación Estructura-Actividad Cuantitativa , Relación Estructura-Actividad
2.
Bioorg Med Chem Lett ; 27(1): 24-29, 2017 01 01.
Artículo en Inglés | MEDLINE | ID: mdl-27890378

RESUMEN

Phosphodiesterase 4 (PDE4) inhibitors have attractive therapeutic potential in respiratory, inflammatory, metabolic and CNS disorders. The present work details the design, chemical exploration and biological profile of a novel PDE4 inhibitor chemotype. A diazepinone ring was identified as an under-represented heterocyclic system fulfilling a set of PDE4 structure-based design hypotheses. Rapid exploration of the structure activity relationships for the series was enabled by robust and scalable two/three-steps parallel chemistry protocols. The resulting compounds demonstrated PDE4 inhibitory activity in cell free and cell-based assays comparable to the Zardaverine control used, suggesting potential avenues for their further development.


Asunto(s)
Azepinas/farmacología , Fosfodiesterasas de Nucleótidos Cíclicos Tipo 4/metabolismo , Diseño de Fármacos , Inhibidores de Fosfodiesterasa 4/farmacología , Azepinas/síntesis química , Azepinas/química , Relación Dosis-Respuesta a Droga , Humanos , Leucocitos Mononucleares/efectos de los fármacos , Leucocitos Mononucleares/metabolismo , Lipopolisacáridos/antagonistas & inhibidores , Lipopolisacáridos/farmacología , Estructura Molecular , Inhibidores de Fosfodiesterasa 4/síntesis química , Inhibidores de Fosfodiesterasa 4/química , Relación Estructura-Actividad , Factor de Necrosis Tumoral alfa/antagonistas & inhibidores , Factor de Necrosis Tumoral alfa/biosíntesis
3.
Eur J Med Chem ; 124: 82-102, 2016 Nov 29.
Artículo en Inglés | MEDLINE | ID: mdl-27560284

RESUMEN

Phosphodiesterase type 4D (PDE4D) has been indicated as a promising target for treating neurodegenerative pathologies such as Alzheimer's Disease (AD). By preventing cAMP hydrolysis, PDE4 inhibitors (PDE4Is) increase the cAMP response element-binding protein (CREB) phosphorylation, synaptic plasticity and long-term memory formation. Pharmacological and behavioral studies on our hit GEBR-7b demonstrated that selective PDE4DIs could improve memory without causing emesis and sedation. The hit development led to new molecule series, herein reported, characterized by a catechol structure bonded to five member heterocycles. Molecular modeling studies highlighted the pivotal role of a polar alkyl chain in conferring selective enzyme interaction. Compound 8a showed PDE4D3 selective inhibition and was able to increase intracellular cAMP levels in neuronal cells, as well as in the hippocampus of freely moving rats. Furthermore, 8a was able to readily cross the blood-brain barrier and enhanced memory performance in mice without causing any emetic-like behavior. These data support the view that PDE4D is an adequate molecular target to restore memory deficits in different neuropathologies, including AD, and also indicate compound 8a as a promising candidate for further preclinical development.


Asunto(s)
Fosfodiesterasas de Nucleótidos Cíclicos Tipo 4/metabolismo , Iminas/química , Iminas/farmacología , Memoria/efectos de los fármacos , Morfolinas/química , Morfolinas/farmacología , Inhibidores de Fosfodiesterasa 4/química , Inhibidores de Fosfodiesterasa 4/farmacología , Animales , Conducta Animal/efectos de los fármacos , Dominio Catalítico , Línea Celular Tumoral , AMP Cíclico/metabolismo , Fosfodiesterasas de Nucleótidos Cíclicos Tipo 4/química , Humanos , Iminas/farmacocinética , Iminas/toxicidad , Masculino , Ratones , Simulación del Acoplamiento Molecular , Simulación de Dinámica Molecular , Morfolinas/farmacocinética , Morfolinas/toxicidad , Inhibidores de Fosfodiesterasa 4/farmacocinética , Inhibidores de Fosfodiesterasa 4/toxicidad , Ratas , Ratas Sprague-Dawley , Escopolamina/farmacología
4.
Eur J Med Chem ; 99: 14-35, 2015 Jun 24.
Artículo en Inglés | MEDLINE | ID: mdl-26041577

RESUMEN

The cystic fibrosis transmembrane conductance regulator (CFTR) is a chloride channel present in the membrane of epithelial cells. Mutations affecting the CFTR gene cause cystic fibrosis (CF), a multi-organ severe disease. The most common CF mutation, F508del, impairs the processing and activity (gating) of CFTR protein. Other mutations, like G551D, only cause a gating defect. Processing and gating defects can be targeted by small molecules called generically correctors and potentiators, respectively. Aminoarylthiazoles (AATs) represent an interesting class of compounds that includes molecules with dual activity, as correctors and potentiators. With the aim to improve the activity profile of AATs, we have now designed and synthesized a library of novel compounds in order to establish an initial SAR that may provide indications about the chemical groups that are beneficial or detrimental for rescue activity. The new compounds were tested as correctors and potentiators in CFBE41o-expressing F508del-CFTR using a functional assay. A dual active compound, AAT-4a, characterized by improved efficacy and marked synergy when combined with the corrector VX-809 has been identified. Moreover, by computational methods, a possible binding site for AATs in nucleotide binding domain NBD1 has been detected. These results will direct the synthesis of new analogues with possibly improved activity.


Asunto(s)
Cloruros/metabolismo , Fibrosis Quística/metabolismo , Diseño de Fármacos , Tiazoles/síntesis química , Tiazoles/farmacología , Transporte Biológico/efectos de los fármacos , Transporte Biológico/genética , Línea Celular , Técnicas de Química Sintética , Fibrosis Quística/tratamiento farmacológico , Fibrosis Quística/genética , Regulador de Conductancia de Transmembrana de Fibrosis Quística/química , Regulador de Conductancia de Transmembrana de Fibrosis Quística/genética , Regulador de Conductancia de Transmembrana de Fibrosis Quística/metabolismo , Humanos , Activación del Canal Iónico/efectos de los fármacos , Modelos Moleculares , Mutación , Estructura Terciaria de Proteína , Relación Estructura-Actividad , Tiazoles/química , Tiazoles/uso terapéutico
5.
J Med Chem ; 57(16): 7061-72, 2014 Aug 28.
Artículo en Inglés | MEDLINE | ID: mdl-25126889

RESUMEN

A new series of 3-(cyclopentyloxy)-4-methoxyphenyl derivatives, structurally related to our hit GEBR-4a (1) and GEBR-7b (2), has been designed by changing length and functionality of the chain linking the catecholic moiety to the terminal cycloamine portion. Among the numerous molecules synthesized, compounds 8, 10a, and 10b showed increased potency as PDE4D enzyme inhibitors with respect to 2 and a good selectivity against PDE4A4, PDE4B2, and PDE4C2 enzymes, without both cytotoxic and genotoxic effects. The ability to enhance cAMP level in neuronal cells was assessed for compound 8. SAR considerations, also confirmed by in silico docking simulations, evidenced that both chain and amino terminal function characterized by higher hydrophilicity are required for a good and selective inhibitor-catalytic pocket interaction.


Asunto(s)
Fosfodiesterasas de Nucleótidos Cíclicos Tipo 4/metabolismo , Iminas/química , Morfolinas/química , Inhibidores de Fosfodiesterasa/química , Inhibidores de Fosfodiesterasa/farmacología , Células Cultivadas , AMP Cíclico/metabolismo , Fosfodiesterasas de Nucleótidos Cíclicos Tipo 4/química , Evaluación Preclínica de Medicamentos/métodos , Humanos , Modelos Moleculares , Simulación del Acoplamiento Molecular , Neuronas/efectos de los fármacos , Inhibidores de Fosfodiesterasa/síntesis química , Relación Estructura-Actividad
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