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SARs for the Antiparasitic Plant Metabolite Pulchrol. Part 2: B- and C-Ring Substituents

Neglected tropical diseases affect most of the underprivileged populations in tropical countries. Among these are chagas and leishmaniasis, present mainly in South and Central America, Africa and East Asia. Current treatments are long and have severe adverse effects, therefore there is a strong need...

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Autores principales: Terrazas, Paola, Manner, Sophie, Sterner, Olov, Dávila, Marcelo, Giménez, Alberto, Salamanca, Efrain
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7582507/
https://www.ncbi.nlm.nih.gov/pubmed/33019678
http://dx.doi.org/10.3390/molecules25194510
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author Terrazas, Paola
Manner, Sophie
Sterner, Olov
Dávila, Marcelo
Giménez, Alberto
Salamanca, Efrain
author_facet Terrazas, Paola
Manner, Sophie
Sterner, Olov
Dávila, Marcelo
Giménez, Alberto
Salamanca, Efrain
author_sort Terrazas, Paola
collection PubMed
description Neglected tropical diseases affect most of the underprivileged populations in tropical countries. Among these are chagas and leishmaniasis, present mainly in South and Central America, Africa and East Asia. Current treatments are long and have severe adverse effects, therefore there is a strong need to develop alternatives. In this study, we base our research on the plant metabolite pulchrol, a natural benzochromene which has been shown to possess antiparasitic activity against Trypanosoma and Leishmania species. In a recent study, we investigated how changes in the benzyl alcohol functionality affected the antiparasitic activity, but the importance of B- and C-ring substituents is not understood. Fifteen derivatives of pulchrol with different substituents in positions 1, 2, 3, and 6 while leaving the A-ring intact, were therefore prepared by total synthesis, assayed, and compared with pulchrol and positive controls. The generated series and parental molecule were tested in vitro for antiparasitic activity against Trypanosoma cruzi, Leishmania braziliensis, and L. amazonensis, and cytotoxicity using RAW cells. Substantial differences in the activity of the compounds synthesized were observed, of which some were more potent towards Trypanosoma cruzi than the positive control benznidazole. A general tendency is that alkyl substituents improve the potency, especially when positioned on C-2.
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spelling pubmed-75825072020-10-29 SARs for the Antiparasitic Plant Metabolite Pulchrol. Part 2: B- and C-Ring Substituents Terrazas, Paola Manner, Sophie Sterner, Olov Dávila, Marcelo Giménez, Alberto Salamanca, Efrain Molecules Article Neglected tropical diseases affect most of the underprivileged populations in tropical countries. Among these are chagas and leishmaniasis, present mainly in South and Central America, Africa and East Asia. Current treatments are long and have severe adverse effects, therefore there is a strong need to develop alternatives. In this study, we base our research on the plant metabolite pulchrol, a natural benzochromene which has been shown to possess antiparasitic activity against Trypanosoma and Leishmania species. In a recent study, we investigated how changes in the benzyl alcohol functionality affected the antiparasitic activity, but the importance of B- and C-ring substituents is not understood. Fifteen derivatives of pulchrol with different substituents in positions 1, 2, 3, and 6 while leaving the A-ring intact, were therefore prepared by total synthesis, assayed, and compared with pulchrol and positive controls. The generated series and parental molecule were tested in vitro for antiparasitic activity against Trypanosoma cruzi, Leishmania braziliensis, and L. amazonensis, and cytotoxicity using RAW cells. Substantial differences in the activity of the compounds synthesized were observed, of which some were more potent towards Trypanosoma cruzi than the positive control benznidazole. A general tendency is that alkyl substituents improve the potency, especially when positioned on C-2. MDPI 2020-10-01 /pmc/articles/PMC7582507/ /pubmed/33019678 http://dx.doi.org/10.3390/molecules25194510 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
Terrazas, Paola
Manner, Sophie
Sterner, Olov
Dávila, Marcelo
Giménez, Alberto
Salamanca, Efrain
SARs for the Antiparasitic Plant Metabolite Pulchrol. Part 2: B- and C-Ring Substituents
title SARs for the Antiparasitic Plant Metabolite Pulchrol. Part 2: B- and C-Ring Substituents
title_full SARs for the Antiparasitic Plant Metabolite Pulchrol. Part 2: B- and C-Ring Substituents
title_fullStr SARs for the Antiparasitic Plant Metabolite Pulchrol. Part 2: B- and C-Ring Substituents
title_full_unstemmed SARs for the Antiparasitic Plant Metabolite Pulchrol. Part 2: B- and C-Ring Substituents
title_short SARs for the Antiparasitic Plant Metabolite Pulchrol. Part 2: B- and C-Ring Substituents
title_sort sars for the antiparasitic plant metabolite pulchrol. part 2: b- and c-ring substituents
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7582507/
https://www.ncbi.nlm.nih.gov/pubmed/33019678
http://dx.doi.org/10.3390/molecules25194510
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