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Dolabelladienols A–C, New Diterpenes Isolated from Brazilian Brown Alga Dictyota pfaffii

The marine brown alga Dictyota pfaffii from Atol das Rocas, in Northeast Brazil is a rich source of dolabellane diterpene, which has the potential to be used in future antiviral drugs by inhibiting reverse transcriptase (RT) of HIV-1. Reexamination of the minor diterpene constituents yielded three n...

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Autores principales: Pardo-Vargas, Alonso, Oliveira, Ingrid de Barcelos, Stephens, Paulo Roberto Soares, Cirne-Santos, Claudio Cesar, Paixão, Izabel Christina Nunes de Palmer, Ramos, Freddy Alejandro, Jiménez, Carlos, Rodríguez, Jaime, Resende, Jackson Antonio Lamounier Camargos, Teixeira, Valeria Laneuville, Castellanos, Leonardo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4113826/
https://www.ncbi.nlm.nih.gov/pubmed/25056631
http://dx.doi.org/10.3390/md12074247
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author Pardo-Vargas, Alonso
Oliveira, Ingrid de Barcelos
Stephens, Paulo Roberto Soares
Cirne-Santos, Claudio Cesar
Paixão, Izabel Christina Nunes de Palmer
Ramos, Freddy Alejandro
Jiménez, Carlos
Rodríguez, Jaime
Resende, Jackson Antonio Lamounier Camargos
Teixeira, Valeria Laneuville
Castellanos, Leonardo
author_facet Pardo-Vargas, Alonso
Oliveira, Ingrid de Barcelos
Stephens, Paulo Roberto Soares
Cirne-Santos, Claudio Cesar
Paixão, Izabel Christina Nunes de Palmer
Ramos, Freddy Alejandro
Jiménez, Carlos
Rodríguez, Jaime
Resende, Jackson Antonio Lamounier Camargos
Teixeira, Valeria Laneuville
Castellanos, Leonardo
author_sort Pardo-Vargas, Alonso
collection PubMed
description The marine brown alga Dictyota pfaffii from Atol das Rocas, in Northeast Brazil is a rich source of dolabellane diterpene, which has the potential to be used in future antiviral drugs by inhibiting reverse transcriptase (RT) of HIV-1. Reexamination of the minor diterpene constituents yielded three new dolabellane diterpenes, (1R*,2E,4R*,7S,10S*,11S*,12R*)10,18-diacetoxy-7-hydroxy-2,8(17)-dolabelladiene (1), (1R*,2E,4R*,7R*,10S*,11S*,12R*)10,18-diacetoxy-7-hydroxy-2,8(17)-dolabelladiene (2), (1R*,2E,4R*,8E,10S*,11S,12R*)10,18-diacetoxy-7-hydroxy-2,8-dolabelladiene (3), termed dolabelladienols A–C (1–3) respectively, in addition to the known dolabellane diterpenes (4–6). The elucidation of the compounds 1–3 was assigned by 1D and 2D NMR, MS, optical rotation and molecular modeling, along with the relative configuration of compound 4 and the absolute configuration of 5 by X-ray diffraction. The potent anti-HIV-1 activities displayed by compounds 1 and 2 (IC(50) = 2.9 and 4.1 μM), which were more active than even the known dolabelladienetriol 4, and the low cytotoxic activity against MT-2 lymphocyte tumor cells indicated that these compounds are promising anti-HIV-1 agents.
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spelling pubmed-41138262014-07-29 Dolabelladienols A–C, New Diterpenes Isolated from Brazilian Brown Alga Dictyota pfaffii Pardo-Vargas, Alonso Oliveira, Ingrid de Barcelos Stephens, Paulo Roberto Soares Cirne-Santos, Claudio Cesar Paixão, Izabel Christina Nunes de Palmer Ramos, Freddy Alejandro Jiménez, Carlos Rodríguez, Jaime Resende, Jackson Antonio Lamounier Camargos Teixeira, Valeria Laneuville Castellanos, Leonardo Mar Drugs Article The marine brown alga Dictyota pfaffii from Atol das Rocas, in Northeast Brazil is a rich source of dolabellane diterpene, which has the potential to be used in future antiviral drugs by inhibiting reverse transcriptase (RT) of HIV-1. Reexamination of the minor diterpene constituents yielded three new dolabellane diterpenes, (1R*,2E,4R*,7S,10S*,11S*,12R*)10,18-diacetoxy-7-hydroxy-2,8(17)-dolabelladiene (1), (1R*,2E,4R*,7R*,10S*,11S*,12R*)10,18-diacetoxy-7-hydroxy-2,8(17)-dolabelladiene (2), (1R*,2E,4R*,8E,10S*,11S,12R*)10,18-diacetoxy-7-hydroxy-2,8-dolabelladiene (3), termed dolabelladienols A–C (1–3) respectively, in addition to the known dolabellane diterpenes (4–6). The elucidation of the compounds 1–3 was assigned by 1D and 2D NMR, MS, optical rotation and molecular modeling, along with the relative configuration of compound 4 and the absolute configuration of 5 by X-ray diffraction. The potent anti-HIV-1 activities displayed by compounds 1 and 2 (IC(50) = 2.9 and 4.1 μM), which were more active than even the known dolabelladienetriol 4, and the low cytotoxic activity against MT-2 lymphocyte tumor cells indicated that these compounds are promising anti-HIV-1 agents. MDPI 2014-07-23 /pmc/articles/PMC4113826/ /pubmed/25056631 http://dx.doi.org/10.3390/md12074247 Text en © 2014 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 license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Pardo-Vargas, Alonso
Oliveira, Ingrid de Barcelos
Stephens, Paulo Roberto Soares
Cirne-Santos, Claudio Cesar
Paixão, Izabel Christina Nunes de Palmer
Ramos, Freddy Alejandro
Jiménez, Carlos
Rodríguez, Jaime
Resende, Jackson Antonio Lamounier Camargos
Teixeira, Valeria Laneuville
Castellanos, Leonardo
Dolabelladienols A–C, New Diterpenes Isolated from Brazilian Brown Alga Dictyota pfaffii
title Dolabelladienols A–C, New Diterpenes Isolated from Brazilian Brown Alga Dictyota pfaffii
title_full Dolabelladienols A–C, New Diterpenes Isolated from Brazilian Brown Alga Dictyota pfaffii
title_fullStr Dolabelladienols A–C, New Diterpenes Isolated from Brazilian Brown Alga Dictyota pfaffii
title_full_unstemmed Dolabelladienols A–C, New Diterpenes Isolated from Brazilian Brown Alga Dictyota pfaffii
title_short Dolabelladienols A–C, New Diterpenes Isolated from Brazilian Brown Alga Dictyota pfaffii
title_sort dolabelladienols a–c, new diterpenes isolated from brazilian brown alga dictyota pfaffii
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4113826/
https://www.ncbi.nlm.nih.gov/pubmed/25056631
http://dx.doi.org/10.3390/md12074247
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