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Antileishmanial Activity of Dimeric Flavonoids Isolated from Arrabidaea brachypoda

Leishmaniasis are diseases caused by parasites belonging to Leishmania genus. The treatment with pentavalent antimonials present high toxicity. Secondary line drugs, such as amphotericin B and miltefosine also have a narrow therapeutic index. Therefore, there is an urgent need to develop new drugs t...

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Autores principales: Rocha, Vinícius P. C., Quintino da Rocha, Cláudia, Ferreira Queiroz, Emerson, Marcourt, Laurence, Vilegas, Wagner, Grimaldi, Gabriela B., Furrer, Pascal, Allémann, Éric, Wolfender, Jean-Luc, Soares, Milena B. P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6337281/
https://www.ncbi.nlm.nih.gov/pubmed/30577423
http://dx.doi.org/10.3390/molecules24010001
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author Rocha, Vinícius P. C.
Quintino da Rocha, Cláudia
Ferreira Queiroz, Emerson
Marcourt, Laurence
Vilegas, Wagner
Grimaldi, Gabriela B.
Furrer, Pascal
Allémann, Éric
Wolfender, Jean-Luc
Soares, Milena B. P.
author_facet Rocha, Vinícius P. C.
Quintino da Rocha, Cláudia
Ferreira Queiroz, Emerson
Marcourt, Laurence
Vilegas, Wagner
Grimaldi, Gabriela B.
Furrer, Pascal
Allémann, Éric
Wolfender, Jean-Luc
Soares, Milena B. P.
author_sort Rocha, Vinícius P. C.
collection PubMed
description Leishmaniasis are diseases caused by parasites belonging to Leishmania genus. The treatment with pentavalent antimonials present high toxicity. Secondary line drugs, such as amphotericin B and miltefosine also have a narrow therapeutic index. Therefore, there is an urgent need to develop new drugs to treat leishmaniasis. Here, we present the in vitro anti-leishmanial activity of unusual dimeric flavonoids purified from Arrabidaea brachypoda. Three compounds were tested against Leishmana sp. Compound 2 was the most active against promastigotes. Quantifying the in vitro infected macrophages revealed that compound 2 was also the most active against intracellular amastigotes of L. amazonensis, without displaying host cell toxicity. Drug combinations presented an additive effect, suggesting the absence of interaction between amphotericin B and compound 2. Amastigotes treated with compound 2 demonstrated alterations in the Golgi and accumulation of vesicles inside the flagellar pocket. Compound 2-treated amastigotes presented a high accumulation of cytoplasmic vesicles and a myelin-like structure. When administered in L. amazonensis-infected mice, neither the oral nor the topical treatments were effective against the parasite. Based on the high in vitro activity, dimeric flavonoids can be used as a lead structure for the development of new molecules that could be useful for structure-active studies against Leishmania.
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spelling pubmed-63372812019-01-25 Antileishmanial Activity of Dimeric Flavonoids Isolated from Arrabidaea brachypoda Rocha, Vinícius P. C. Quintino da Rocha, Cláudia Ferreira Queiroz, Emerson Marcourt, Laurence Vilegas, Wagner Grimaldi, Gabriela B. Furrer, Pascal Allémann, Éric Wolfender, Jean-Luc Soares, Milena B. P. Molecules Article Leishmaniasis are diseases caused by parasites belonging to Leishmania genus. The treatment with pentavalent antimonials present high toxicity. Secondary line drugs, such as amphotericin B and miltefosine also have a narrow therapeutic index. Therefore, there is an urgent need to develop new drugs to treat leishmaniasis. Here, we present the in vitro anti-leishmanial activity of unusual dimeric flavonoids purified from Arrabidaea brachypoda. Three compounds were tested against Leishmana sp. Compound 2 was the most active against promastigotes. Quantifying the in vitro infected macrophages revealed that compound 2 was also the most active against intracellular amastigotes of L. amazonensis, without displaying host cell toxicity. Drug combinations presented an additive effect, suggesting the absence of interaction between amphotericin B and compound 2. Amastigotes treated with compound 2 demonstrated alterations in the Golgi and accumulation of vesicles inside the flagellar pocket. Compound 2-treated amastigotes presented a high accumulation of cytoplasmic vesicles and a myelin-like structure. When administered in L. amazonensis-infected mice, neither the oral nor the topical treatments were effective against the parasite. Based on the high in vitro activity, dimeric flavonoids can be used as a lead structure for the development of new molecules that could be useful for structure-active studies against Leishmania. MDPI 2018-12-20 /pmc/articles/PMC6337281/ /pubmed/30577423 http://dx.doi.org/10.3390/molecules24010001 Text en © 2018 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
Rocha, Vinícius P. C.
Quintino da Rocha, Cláudia
Ferreira Queiroz, Emerson
Marcourt, Laurence
Vilegas, Wagner
Grimaldi, Gabriela B.
Furrer, Pascal
Allémann, Éric
Wolfender, Jean-Luc
Soares, Milena B. P.
Antileishmanial Activity of Dimeric Flavonoids Isolated from Arrabidaea brachypoda
title Antileishmanial Activity of Dimeric Flavonoids Isolated from Arrabidaea brachypoda
title_full Antileishmanial Activity of Dimeric Flavonoids Isolated from Arrabidaea brachypoda
title_fullStr Antileishmanial Activity of Dimeric Flavonoids Isolated from Arrabidaea brachypoda
title_full_unstemmed Antileishmanial Activity of Dimeric Flavonoids Isolated from Arrabidaea brachypoda
title_short Antileishmanial Activity of Dimeric Flavonoids Isolated from Arrabidaea brachypoda
title_sort antileishmanial activity of dimeric flavonoids isolated from arrabidaea brachypoda
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6337281/
https://www.ncbi.nlm.nih.gov/pubmed/30577423
http://dx.doi.org/10.3390/molecules24010001
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