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Alkoxyamines Designed as Potential Drugs against Plasmodium and Schistosoma Parasites

Malaria and schistosomiasis are major infectious causes of morbidity and mortality in the tropical and sub-tropical areas. Due to the widespread drug resistance of the parasites, the availability of new efficient and affordable drugs for these endemic pathologies is now a critical public health issu...

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Autores principales: Reyser, Thibaud, To, Tung H., Egwu, Chinedu, Paloque, Lucie, Nguyen, Michel, Hamouy, Alexandre, Stigliani, Jean-Luc, Bijani, Christian, Augereau, Jean-Michel, Joly, Jean-Patrick, Portela, Julien, Havot, Jeffrey, Marque, Sylvain R. A., Boissier, Jérôme, Robert, Anne, Benoit-Vical, Françoise, Audran, Gérard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7503767/
https://www.ncbi.nlm.nih.gov/pubmed/32846996
http://dx.doi.org/10.3390/molecules25173838
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author Reyser, Thibaud
To, Tung H.
Egwu, Chinedu
Paloque, Lucie
Nguyen, Michel
Hamouy, Alexandre
Stigliani, Jean-Luc
Bijani, Christian
Augereau, Jean-Michel
Joly, Jean-Patrick
Portela, Julien
Havot, Jeffrey
Marque, Sylvain R. A.
Boissier, Jérôme
Robert, Anne
Benoit-Vical, Françoise
Audran, Gérard
author_facet Reyser, Thibaud
To, Tung H.
Egwu, Chinedu
Paloque, Lucie
Nguyen, Michel
Hamouy, Alexandre
Stigliani, Jean-Luc
Bijani, Christian
Augereau, Jean-Michel
Joly, Jean-Patrick
Portela, Julien
Havot, Jeffrey
Marque, Sylvain R. A.
Boissier, Jérôme
Robert, Anne
Benoit-Vical, Françoise
Audran, Gérard
author_sort Reyser, Thibaud
collection PubMed
description Malaria and schistosomiasis are major infectious causes of morbidity and mortality in the tropical and sub-tropical areas. Due to the widespread drug resistance of the parasites, the availability of new efficient and affordable drugs for these endemic pathologies is now a critical public health issue. In this study, we report the design, the synthesis and the preliminary biological evaluation of a series of alkoxyamine derivatives as potential drugs against Plasmodium and Schistosoma parasites. The compounds (RS/SR)-2F, (RR/SS)-2F, and 8F, having IC(50) values in nanomolar range against drug-resistant P. falciparum strains, but also five other alkoxyamines, inducing the death of all adult worms of S. mansoni in only 1 h, can be considered as interesting chemical starting points of the series for improvement of the activity, and further structure activity, relationship studies. Moreover, investigation of the mode of action and the rate constants k(d) for C-ON bond homolysis of new alkoxyamines is reported, showing a possible alkyl radical mediated biological activity. A theoretical chemistry study allowed us to design new structures of alkoxyamines in order to improve the selectivity index of these drugs.
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spelling pubmed-75037672020-09-27 Alkoxyamines Designed as Potential Drugs against Plasmodium and Schistosoma Parasites Reyser, Thibaud To, Tung H. Egwu, Chinedu Paloque, Lucie Nguyen, Michel Hamouy, Alexandre Stigliani, Jean-Luc Bijani, Christian Augereau, Jean-Michel Joly, Jean-Patrick Portela, Julien Havot, Jeffrey Marque, Sylvain R. A. Boissier, Jérôme Robert, Anne Benoit-Vical, Françoise Audran, Gérard Molecules Article Malaria and schistosomiasis are major infectious causes of morbidity and mortality in the tropical and sub-tropical areas. Due to the widespread drug resistance of the parasites, the availability of new efficient and affordable drugs for these endemic pathologies is now a critical public health issue. In this study, we report the design, the synthesis and the preliminary biological evaluation of a series of alkoxyamine derivatives as potential drugs against Plasmodium and Schistosoma parasites. The compounds (RS/SR)-2F, (RR/SS)-2F, and 8F, having IC(50) values in nanomolar range against drug-resistant P. falciparum strains, but also five other alkoxyamines, inducing the death of all adult worms of S. mansoni in only 1 h, can be considered as interesting chemical starting points of the series for improvement of the activity, and further structure activity, relationship studies. Moreover, investigation of the mode of action and the rate constants k(d) for C-ON bond homolysis of new alkoxyamines is reported, showing a possible alkyl radical mediated biological activity. A theoretical chemistry study allowed us to design new structures of alkoxyamines in order to improve the selectivity index of these drugs. MDPI 2020-08-24 /pmc/articles/PMC7503767/ /pubmed/32846996 http://dx.doi.org/10.3390/molecules25173838 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
Reyser, Thibaud
To, Tung H.
Egwu, Chinedu
Paloque, Lucie
Nguyen, Michel
Hamouy, Alexandre
Stigliani, Jean-Luc
Bijani, Christian
Augereau, Jean-Michel
Joly, Jean-Patrick
Portela, Julien
Havot, Jeffrey
Marque, Sylvain R. A.
Boissier, Jérôme
Robert, Anne
Benoit-Vical, Françoise
Audran, Gérard
Alkoxyamines Designed as Potential Drugs against Plasmodium and Schistosoma Parasites
title Alkoxyamines Designed as Potential Drugs against Plasmodium and Schistosoma Parasites
title_full Alkoxyamines Designed as Potential Drugs against Plasmodium and Schistosoma Parasites
title_fullStr Alkoxyamines Designed as Potential Drugs against Plasmodium and Schistosoma Parasites
title_full_unstemmed Alkoxyamines Designed as Potential Drugs against Plasmodium and Schistosoma Parasites
title_short Alkoxyamines Designed as Potential Drugs against Plasmodium and Schistosoma Parasites
title_sort alkoxyamines designed as potential drugs against plasmodium and schistosoma parasites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7503767/
https://www.ncbi.nlm.nih.gov/pubmed/32846996
http://dx.doi.org/10.3390/molecules25173838
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