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Antifungal Activity of Chemical Constituents from Piper pesaresanum C. DC. and Derivatives against Phytopathogen Fungi of Cocoa

In this study, the antifungal potential of chemical constituents from Piper pesaresanum and some synthesized derivatives was determined against three phytopathogenic fungi associated with the cocoa crop. The methodology included the phytochemical study on the aerial part of P. pesaresanum, the synth...

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Autores principales: Chitiva-Chitiva, Luis C., Ladino-Vargas, Cristóbal, Cuca-Suárez, Luis E., Prieto-Rodríguez, Juliet A., Patiño-Ladino, Oscar J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8198927/
https://www.ncbi.nlm.nih.gov/pubmed/34071493
http://dx.doi.org/10.3390/molecules26113256
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author Chitiva-Chitiva, Luis C.
Ladino-Vargas, Cristóbal
Cuca-Suárez, Luis E.
Prieto-Rodríguez, Juliet A.
Patiño-Ladino, Oscar J.
author_facet Chitiva-Chitiva, Luis C.
Ladino-Vargas, Cristóbal
Cuca-Suárez, Luis E.
Prieto-Rodríguez, Juliet A.
Patiño-Ladino, Oscar J.
author_sort Chitiva-Chitiva, Luis C.
collection PubMed
description In this study, the antifungal potential of chemical constituents from Piper pesaresanum and some synthesized derivatives was determined against three phytopathogenic fungi associated with the cocoa crop. The methodology included the phytochemical study on the aerial part of P. pesaresanum, the synthesis of some derivatives and the evaluation of the antifungal activity against the fungi Moniliophthora roreri, Fusarium solani and Phytophthora sp. The chemical study allowed the isolation of three benzoic acid derivatives (1–3), one dihydrochalcone (4) and a mixture of sterols (5–7). Seven derivatives (8–14) were synthesized from the main constituents, of which compounds 9, 10, 12 and 14 are reported for the first time. Benzoic acid derivatives showed strong antifungal activity against M. roreri, of which 11 (3.0 ± 0.8 µM) was the most active compound with an IC(50) lower compared with positive control Mancozeb(®) (4.9 ± 0.4 µM). Dihydrochalcones and acid derivatives were active against F. solani and Phytophthora sp., of which 3 (32.5 ± 3.3 µM) and 4 (26.7 ± 5.3 µM) were the most active compounds, respectively. The preliminary structure–activity relationship allowed us to establish that prenylated chains and the carboxyl group are important in the antifungal activity of benzoic acid derivatives. Likewise, a positive influence of the carbonyl group on the antifungal activity for dihydrochalcones was deduced.
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spelling pubmed-81989272021-06-14 Antifungal Activity of Chemical Constituents from Piper pesaresanum C. DC. and Derivatives against Phytopathogen Fungi of Cocoa Chitiva-Chitiva, Luis C. Ladino-Vargas, Cristóbal Cuca-Suárez, Luis E. Prieto-Rodríguez, Juliet A. Patiño-Ladino, Oscar J. Molecules Article In this study, the antifungal potential of chemical constituents from Piper pesaresanum and some synthesized derivatives was determined against three phytopathogenic fungi associated with the cocoa crop. The methodology included the phytochemical study on the aerial part of P. pesaresanum, the synthesis of some derivatives and the evaluation of the antifungal activity against the fungi Moniliophthora roreri, Fusarium solani and Phytophthora sp. The chemical study allowed the isolation of three benzoic acid derivatives (1–3), one dihydrochalcone (4) and a mixture of sterols (5–7). Seven derivatives (8–14) were synthesized from the main constituents, of which compounds 9, 10, 12 and 14 are reported for the first time. Benzoic acid derivatives showed strong antifungal activity against M. roreri, of which 11 (3.0 ± 0.8 µM) was the most active compound with an IC(50) lower compared with positive control Mancozeb(®) (4.9 ± 0.4 µM). Dihydrochalcones and acid derivatives were active against F. solani and Phytophthora sp., of which 3 (32.5 ± 3.3 µM) and 4 (26.7 ± 5.3 µM) were the most active compounds, respectively. The preliminary structure–activity relationship allowed us to establish that prenylated chains and the carboxyl group are important in the antifungal activity of benzoic acid derivatives. Likewise, a positive influence of the carbonyl group on the antifungal activity for dihydrochalcones was deduced. MDPI 2021-05-28 /pmc/articles/PMC8198927/ /pubmed/34071493 http://dx.doi.org/10.3390/molecules26113256 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chitiva-Chitiva, Luis C.
Ladino-Vargas, Cristóbal
Cuca-Suárez, Luis E.
Prieto-Rodríguez, Juliet A.
Patiño-Ladino, Oscar J.
Antifungal Activity of Chemical Constituents from Piper pesaresanum C. DC. and Derivatives against Phytopathogen Fungi of Cocoa
title Antifungal Activity of Chemical Constituents from Piper pesaresanum C. DC. and Derivatives against Phytopathogen Fungi of Cocoa
title_full Antifungal Activity of Chemical Constituents from Piper pesaresanum C. DC. and Derivatives against Phytopathogen Fungi of Cocoa
title_fullStr Antifungal Activity of Chemical Constituents from Piper pesaresanum C. DC. and Derivatives against Phytopathogen Fungi of Cocoa
title_full_unstemmed Antifungal Activity of Chemical Constituents from Piper pesaresanum C. DC. and Derivatives against Phytopathogen Fungi of Cocoa
title_short Antifungal Activity of Chemical Constituents from Piper pesaresanum C. DC. and Derivatives against Phytopathogen Fungi of Cocoa
title_sort antifungal activity of chemical constituents from piper pesaresanum c. dc. and derivatives against phytopathogen fungi of cocoa
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8198927/
https://www.ncbi.nlm.nih.gov/pubmed/34071493
http://dx.doi.org/10.3390/molecules26113256
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