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Pharmacomodulation of the Antimalarial Plasmodione: Synthesis of Biaryl- and N-Arylalkylamine Analogues, Antimalarial Activities and Physicochemical Properties

With the aim of increasing the structural diversity on the early antimalarial drug plasmodione, an efficient and versatile procedure to prepare a series of biaryl- and N-arylalkylamines as plasmodione analogues is described. Using the naturally occurring and commercially available menadione as start...

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Autores principales: Urgin, Karène, Jida, Mouhamad, Ehrhardt, Katharina, Müller, Tobias, Lanzer, Michael, Maes, Louis, Elhabiri, Mourad, Davioud-Charvet, Elisabeth
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6155649/
https://www.ncbi.nlm.nih.gov/pubmed/28106855
http://dx.doi.org/10.3390/molecules22010161
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author Urgin, Karène
Jida, Mouhamad
Ehrhardt, Katharina
Müller, Tobias
Lanzer, Michael
Maes, Louis
Elhabiri, Mourad
Davioud-Charvet, Elisabeth
author_facet Urgin, Karène
Jida, Mouhamad
Ehrhardt, Katharina
Müller, Tobias
Lanzer, Michael
Maes, Louis
Elhabiri, Mourad
Davioud-Charvet, Elisabeth
author_sort Urgin, Karène
collection PubMed
description With the aim of increasing the structural diversity on the early antimalarial drug plasmodione, an efficient and versatile procedure to prepare a series of biaryl- and N-arylalkylamines as plasmodione analogues is described. Using the naturally occurring and commercially available menadione as starting material, a 2-step sequence using a Kochi-Anderson reaction and subsequent Pd-catalyzed Suzuki-Miyaura coupling was developed to prepare three representative biphenyl derivatives in good yields for antimalarial evaluation. In addition, synthetic methodologies to afford 3-benzylmenadione derivatives bearing a terminal -N(Me)(2) or -N(Et)(2) in different positions (ortho, meta and para) on the aryl ring of the benzylic chain of plasmodione were investigated through reductive amination was used as the optimal route to prepare these protonable N-arylalkylamine privileged scaffolds. The antimalarial activities were evaluated and discussed in light of their physicochemical properties. Among the newly synthesized compounds, the para-position of the substituent remains the most favourable position on the benzyl chain and the carbamate -NHBoc was found active both in vitro (42 nM versus 29 nM for plasmodione) and in vivo in Plasmodium berghei-infected mice. The measured acido-basic features of these new molecules support the cytosol-food vacuole shuttling properties of non-protonable plasmodione derivatives essential for redox-cycling. These findings may be useful in antimalarial drug optimization.
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spelling pubmed-61556492018-11-13 Pharmacomodulation of the Antimalarial Plasmodione: Synthesis of Biaryl- and N-Arylalkylamine Analogues, Antimalarial Activities and Physicochemical Properties Urgin, Karène Jida, Mouhamad Ehrhardt, Katharina Müller, Tobias Lanzer, Michael Maes, Louis Elhabiri, Mourad Davioud-Charvet, Elisabeth Molecules Article With the aim of increasing the structural diversity on the early antimalarial drug plasmodione, an efficient and versatile procedure to prepare a series of biaryl- and N-arylalkylamines as plasmodione analogues is described. Using the naturally occurring and commercially available menadione as starting material, a 2-step sequence using a Kochi-Anderson reaction and subsequent Pd-catalyzed Suzuki-Miyaura coupling was developed to prepare three representative biphenyl derivatives in good yields for antimalarial evaluation. In addition, synthetic methodologies to afford 3-benzylmenadione derivatives bearing a terminal -N(Me)(2) or -N(Et)(2) in different positions (ortho, meta and para) on the aryl ring of the benzylic chain of plasmodione were investigated through reductive amination was used as the optimal route to prepare these protonable N-arylalkylamine privileged scaffolds. The antimalarial activities were evaluated and discussed in light of their physicochemical properties. Among the newly synthesized compounds, the para-position of the substituent remains the most favourable position on the benzyl chain and the carbamate -NHBoc was found active both in vitro (42 nM versus 29 nM for plasmodione) and in vivo in Plasmodium berghei-infected mice. The measured acido-basic features of these new molecules support the cytosol-food vacuole shuttling properties of non-protonable plasmodione derivatives essential for redox-cycling. These findings may be useful in antimalarial drug optimization. MDPI 2017-01-19 /pmc/articles/PMC6155649/ /pubmed/28106855 http://dx.doi.org/10.3390/molecules22010161 Text en © 2017 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
Urgin, Karène
Jida, Mouhamad
Ehrhardt, Katharina
Müller, Tobias
Lanzer, Michael
Maes, Louis
Elhabiri, Mourad
Davioud-Charvet, Elisabeth
Pharmacomodulation of the Antimalarial Plasmodione: Synthesis of Biaryl- and N-Arylalkylamine Analogues, Antimalarial Activities and Physicochemical Properties
title Pharmacomodulation of the Antimalarial Plasmodione: Synthesis of Biaryl- and N-Arylalkylamine Analogues, Antimalarial Activities and Physicochemical Properties
title_full Pharmacomodulation of the Antimalarial Plasmodione: Synthesis of Biaryl- and N-Arylalkylamine Analogues, Antimalarial Activities and Physicochemical Properties
title_fullStr Pharmacomodulation of the Antimalarial Plasmodione: Synthesis of Biaryl- and N-Arylalkylamine Analogues, Antimalarial Activities and Physicochemical Properties
title_full_unstemmed Pharmacomodulation of the Antimalarial Plasmodione: Synthesis of Biaryl- and N-Arylalkylamine Analogues, Antimalarial Activities and Physicochemical Properties
title_short Pharmacomodulation of the Antimalarial Plasmodione: Synthesis of Biaryl- and N-Arylalkylamine Analogues, Antimalarial Activities and Physicochemical Properties
title_sort pharmacomodulation of the antimalarial plasmodione: synthesis of biaryl- and n-arylalkylamine analogues, antimalarial activities and physicochemical properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6155649/
https://www.ncbi.nlm.nih.gov/pubmed/28106855
http://dx.doi.org/10.3390/molecules22010161
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