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Synthesis and Antiplasmodial Evaluation of 4-Carboxamido- and 4-Alkoxy-2-Trichloromethyl Quinazolines

From three previously identified antiplasmodial hit compounds (A–C) and inactive series (D), all based on a 2-trichloromethylquinazoline scaffold, we conducted a structure-activity relationship (SAR) study at position four of the quinazoline ring by synthesizing 42 novel derivatives bearing either a...

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Autores principales: Amrane, Dyhia, Gellis, Armand, Hutter, Sébastien, Prieri, Marion, Verhaeghe, Pierre, Azas, Nadine, Vanelle, Patrice, Primas, Nicolas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7504092/
https://www.ncbi.nlm.nih.gov/pubmed/32867402
http://dx.doi.org/10.3390/molecules25173929
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author Amrane, Dyhia
Gellis, Armand
Hutter, Sébastien
Prieri, Marion
Verhaeghe, Pierre
Azas, Nadine
Vanelle, Patrice
Primas, Nicolas
author_facet Amrane, Dyhia
Gellis, Armand
Hutter, Sébastien
Prieri, Marion
Verhaeghe, Pierre
Azas, Nadine
Vanelle, Patrice
Primas, Nicolas
author_sort Amrane, Dyhia
collection PubMed
description From three previously identified antiplasmodial hit compounds (A–C) and inactive series (D), all based on a 2-trichloromethylquinazoline scaffold, we conducted a structure-activity relationship (SAR) study at position four of the quinazoline ring by synthesizing 42 novel derivatives bearing either a carboxamido- or an alkoxy-group, to identify antiplasmodial compounds and to enrich the knowledge about the 2-trichloromethylquinazoline antiplasmodial pharmacophore. All compounds were evaluated in vitro for their cytotoxicity towards the HepG2 cell line and their activity against the multiresistant K1 P. falciparum strain, using doxorubicin, chloroquine and doxycycline as reference drugs. Four hit-compounds (EC(50) K1 P. falciparum ≤ 2 µM and SI ≥ 20) were identified among 4-carboxamido derivatives (2, 9, 16, and 24) and two among 4-alkoxy derivatives (41 and 44). Regarding the two most potent molecules (16 and 41), five derivatives without a 2-CCl(3) group were prepared, evaluated, and appeared totally inactive (EC(50) > 50 µM), showing that the 2-trichloromethyl group was mandatory for the antiplasmodial activity.
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spelling pubmed-75040922020-09-24 Synthesis and Antiplasmodial Evaluation of 4-Carboxamido- and 4-Alkoxy-2-Trichloromethyl Quinazolines Amrane, Dyhia Gellis, Armand Hutter, Sébastien Prieri, Marion Verhaeghe, Pierre Azas, Nadine Vanelle, Patrice Primas, Nicolas Molecules Article From three previously identified antiplasmodial hit compounds (A–C) and inactive series (D), all based on a 2-trichloromethylquinazoline scaffold, we conducted a structure-activity relationship (SAR) study at position four of the quinazoline ring by synthesizing 42 novel derivatives bearing either a carboxamido- or an alkoxy-group, to identify antiplasmodial compounds and to enrich the knowledge about the 2-trichloromethylquinazoline antiplasmodial pharmacophore. All compounds were evaluated in vitro for their cytotoxicity towards the HepG2 cell line and their activity against the multiresistant K1 P. falciparum strain, using doxorubicin, chloroquine and doxycycline as reference drugs. Four hit-compounds (EC(50) K1 P. falciparum ≤ 2 µM and SI ≥ 20) were identified among 4-carboxamido derivatives (2, 9, 16, and 24) and two among 4-alkoxy derivatives (41 and 44). Regarding the two most potent molecules (16 and 41), five derivatives without a 2-CCl(3) group were prepared, evaluated, and appeared totally inactive (EC(50) > 50 µM), showing that the 2-trichloromethyl group was mandatory for the antiplasmodial activity. MDPI 2020-08-27 /pmc/articles/PMC7504092/ /pubmed/32867402 http://dx.doi.org/10.3390/molecules25173929 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Amrane, Dyhia
Gellis, Armand
Hutter, Sébastien
Prieri, Marion
Verhaeghe, Pierre
Azas, Nadine
Vanelle, Patrice
Primas, Nicolas
Synthesis and Antiplasmodial Evaluation of 4-Carboxamido- and 4-Alkoxy-2-Trichloromethyl Quinazolines
title Synthesis and Antiplasmodial Evaluation of 4-Carboxamido- and 4-Alkoxy-2-Trichloromethyl Quinazolines
title_full Synthesis and Antiplasmodial Evaluation of 4-Carboxamido- and 4-Alkoxy-2-Trichloromethyl Quinazolines
title_fullStr Synthesis and Antiplasmodial Evaluation of 4-Carboxamido- and 4-Alkoxy-2-Trichloromethyl Quinazolines
title_full_unstemmed Synthesis and Antiplasmodial Evaluation of 4-Carboxamido- and 4-Alkoxy-2-Trichloromethyl Quinazolines
title_short Synthesis and Antiplasmodial Evaluation of 4-Carboxamido- and 4-Alkoxy-2-Trichloromethyl Quinazolines
title_sort synthesis and antiplasmodial evaluation of 4-carboxamido- and 4-alkoxy-2-trichloromethyl quinazolines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7504092/
https://www.ncbi.nlm.nih.gov/pubmed/32867402
http://dx.doi.org/10.3390/molecules25173929
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