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Dive into the research topics where Abdelaziz El Maatougui is active.

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Featured researches published by Abdelaziz El Maatougui.


ACS Medicinal Chemistry Letters | 2013

Discovery of 3,4-Dihydropyrimidin-2(1H)-ones As a Novel Class of Potent and Selective A2B Adenosine Receptor Antagonists.

Abel Crespo; Abdelaziz El Maatougui; Pierfrancesco Biagini; Jhonny Azuaje; Alberto Coelho; José Antonio Fraiz Brea; María Isabel Loza; María Isabel Cadavid; Xerardo García-Mera; Hugo Gutiérrez-de-Terán; Eddy Sotelo

We describe the discovery and optimization of 3,4-dihydropyrimidin-2(1H)-ones as a novel family of (nonxanthine) A2B receptor antagonists that exhibit an unusually high selectivity profile. The Biginelli-based hit optimization process enabled a thoughtful exploration of the structure-activity and structure-selectivity relationships for this chemotype, enabling the identification of ligands that combine structural simplicity with excellent hA2B AdoR affinity and remarkable selectivity profiles.


Journal of Medicinal Chemistry | 2016

Discovery of Potent and Highly Selective A2B Adenosine Receptor Antagonist Chemotypes

Abdelaziz El Maatougui; Jhonny Azuaje; Manuel González-Gómez; Gabriel Miguez; Abel Crespo; Carlos Carbajales; Luz Escalante; Xerardo García-Mera; Hugo Gutiérrez-de-Terán; Eddy Sotelo

Three novel families of A2B adenosine receptor antagonists were identified in the context of the structural exploration of the 3,4-dihydropyrimidin-2(1H)-one chemotype. The most appealing series contain imidazole, 1,2,4-triazole, or benzimidazole rings fused to the 2,3-positions of the parent diazinone core. The optimization process enabled identification of a highly potent (3.49 nM) A2B ligand that exhibits complete selectivity toward A1, A2A, and A3 receptors. The results of functional cAMP experiments confirmed the antagonistic behavior of representative ligands. The main SAR trends identified within the series were substantiated by a molecular modeling study based on a receptor-driven docking model constructed on the basis of the crystal structure of the human A2A receptor.


Journal of Organic Chemistry | 2015

Integrated Ugi-based assembly of functionally, skeletally, and stereochemically diverse 1,4-benzodiazepin-2-ones.

Jhonny Azuaje; José M. Pérez-Rubio; Vicente Yaziji; Abdelaziz El Maatougui; José C. González-Gómez; Víctor M. Sánchez-Pedregal; Armando Navarro-Vázquez; Christian F. Masaguer; Marta Teijeira; Eddy Sotelo

A practical, integrated and versatile U-4CR-based assembly of 1,4-benzodiazepin-2-ones exhibiting functionally, skeletally, and stereochemically diverse substitution patterns is described. By virtue of its convergence, atom economy, and bond-forming efficiency, the methodology documented herein exemplifies the reconciliation of structural complexity and experimental simplicity in the context of medicinal chemistry projects.


Journal of Organic Chemistry | 2013

Copper-catalyzed Huisgen 1,3-dipolar cycloaddition under oxidative conditions: polymer-assisted assembly of 4-acyl-1-substituted-1,2,3-triazoles.

Paula M. Diz; Alberto Coelho; Abdelaziz El Maatougui; Jhonny Azuaje; Olga Caamaño; Alvaro Gil; Eddy Sotelo

We herein document the first example of a reliable copper-catalyzed Huisgen 1,3-dipolar cycloaddition under oxidative conditions. The combined use of two polymer-supported reagents (polystyrene-1,5,7-triazabicyclo[4,4,0]dec-5-ene/Cu and polystyrene-2-iodoxybenzamide) overcomes the thermodynamic instability of copper(I) species toward oxidation, enabling the reliable Cu-catalyzed Huisgen 1,3-dipolar cycloadditions in the presence of an oxidant agent. This polymer-assisted pathway, not feasible under conventional homogeneous conditions, provides a direct assembly of 4-acyl-1-substituted-1,2,3-triazoles, contributing to expand the reliability and scope of Cu(I)-catalyzed alkyne-azide cycloaddition.


ACS Combinatorial Science | 2011

Supported p-toluenesulfonic acid as a highly robust and eco-friendly isocyanide scavenger.

Jhonny Azuaje; Alberto Coelho; Abdelaziz El Maatougui; José Manuel Blanco; Eddy Sotelo

We document here the use of polymer-supported p-toluenesulfonic acid as a highly effective, robust, economical and eco-friendly isocyanide scavenger. The herein described strategy circumvent the intense and repulsive odor of volatile isocyanides, enabling simplified and odorless workup and purifications. The usefulness of the new scavengers has been validated in a set of diverse isocyanide-based organic transformations and this approach is also amenable to parallel synthesis techniques.


Journal of Organic Chemistry | 2013

Multicomponent Assembly of Diverse Pyrazin-2(1H)-one Chemotypes

Jhonny Azuaje; Abdelaziz El Maatougui; José M. Pérez-Rubio; Alberto Coelho; Franco Fernández; Eddy Sotelo

An expedient and concise Ugi-based approach for the rapid assembly of pyrazin-2(1H)-one-based frameworks has been developed. This convergent approach encompasses skeletal, functional and stereochemical diversity, exhibiting an unusually high bond-forming efficiency as well as high structure and step economies. The method involves the use of readily available commercial reagents and is an example of the reconciliation of structural complexity with operational simplicity in a time- and cost-effective manner.


ACS Combinatorial Science | 2014

Ugi-based approaches to quinoxaline libraries.

Jhonny Azuaje; Abdelaziz El Maatougui; Xerardo García-Mera; Eddy Sotelo

An expedient and concise Ugi-based unified approach for the rapid assembly of quinoxaline frameworks has been developed. This convergent and versatile method uses readily available commercial reagents, does not require advanced intermediates, and exhibits excellent bond-forming efficiency, thus exemplifying the operationally simple synthesis of quinoxaline libraries.


ACS Combinatorial Science | 2009

Divergent solution-phase synthesis of diarylpyrimidine libraries as selective A3 adenosine receptor antagonists.

Vicente Yaziji; Alberto Coelho; Abdelaziz El Maatougui; José Antonio Fraiz Brea; M. Isabel Loza; Xerardo García-Mera; Eddy Sotelo

A practical and divergent solution-phase synthetic strategy has been optimized to prepare a highly diverse library of 2,4-diaryl- and 2,6-diarylpyrimidines. Structural elaboration of the starting heterocyclic scaffolds was accomplished by exploiting the potential for diversity offered by the Suzuki-Miyaura cross-coupling reaction. These studies enabled the identification of structurally simple, highly potent, and selective A(3) adenosine receptor antagonists.


ACS Combinatorial Science | 2013

Three-component assembly of structurally diverse 2-aminopyrimidine-5-carbonitriles.

Cristina Val; Abel Crespo; Vicente Yaziji; Alberto Coelho; Jhonny Azuaje; Abdelaziz El Maatougui; Carlos Carbajales; Eddy Sotelo

An expedient route for the synthesis of libraries of diversely decorated 2-aminopyrimidine-5-carbonitriles is reported. This approach is based on a three-component reaction followed by spontaneous aromatization.


Combinatorial Chemistry & High Throughput Screening | 2012

Discovery and Preliminary SAR of 5-Arylidene-2,2-Dimethyl-1,3-Dioxane- 4,6-Diones as Platelet Aggregation Inhibitors

Abdelaziz El Maatougui; JhonnyAzuaje; Alberto Coelho; Ernesto Cano; Matilde Yáñez; Carmen Lopez; Vicente Yaziji; Carlos Carbajales; Eddy Sotelo

We herein document the discovery of 5-arylidene-2,2-dimethyl-1,3-dioxane-4,6-diones as a novel family of platelet aggregation inhibitors. The preliminary optimization study enabled us to establish the most salient features of the structure-activity relationships in this series as well as to identify novel derivatives that are upto 60 times more potent than the hit structure 1 and slightly superior to the reference drug Milrinone.

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Eddy Sotelo

University of Santiago de Compostela

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Alberto Coelho

University of Santiago de Compostela

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Jhonny Azuaje

University of Santiago de Compostela

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Abel Crespo

University of Santiago de Compostela

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José Antonio Fraiz Brea

University of Santiago de Compostela

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Vicente Yaziji

University of Santiago de Compostela

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Xerardo García-Mera

University of Santiago de Compostela

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María Isabel Loza

University of Santiago de Compostela

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Carlos Carbajales

University of Santiago de Compostela

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