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Constituents of the Stem Bark of Symphonia globulifera Linn. f. with Antileishmanial and Antibacterial Activities

The chemical investigation of the n-hexane fraction from the methanol extract of the stem bark of Symphonia globulifera Linn f., which displayed good in vitro activity against Leishmania donovani NR-48822 promastigotes (IC(50) 43.11 µg/mL), led to the isolation of three previously unreported polypre...

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Autores principales: Nguengang, Ruland Tchuinkeu, Tchegnitegni, Billy Toussie, Nono, Eric Carly Nono, Bellier Tabekoueng, Georges, Fongang, Yannick Stéphane Fotsing, Bankeu, Jean Jules Kezetas, Chouna, Jean Rodolphe, Nkenfou, Céline Nguefeu, Fekam, Fabrice Boyom, Sewald, Norbert, Lenta, Bruno Ndjakou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10053230/
https://www.ncbi.nlm.nih.gov/pubmed/36985446
http://dx.doi.org/10.3390/molecules28062473
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author Nguengang, Ruland Tchuinkeu
Tchegnitegni, Billy Toussie
Nono, Eric Carly Nono
Bellier Tabekoueng, Georges
Fongang, Yannick Stéphane Fotsing
Bankeu, Jean Jules Kezetas
Chouna, Jean Rodolphe
Nkenfou, Céline Nguefeu
Fekam, Fabrice Boyom
Sewald, Norbert
Lenta, Bruno Ndjakou
author_facet Nguengang, Ruland Tchuinkeu
Tchegnitegni, Billy Toussie
Nono, Eric Carly Nono
Bellier Tabekoueng, Georges
Fongang, Yannick Stéphane Fotsing
Bankeu, Jean Jules Kezetas
Chouna, Jean Rodolphe
Nkenfou, Céline Nguefeu
Fekam, Fabrice Boyom
Sewald, Norbert
Lenta, Bruno Ndjakou
author_sort Nguengang, Ruland Tchuinkeu
collection PubMed
description The chemical investigation of the n-hexane fraction from the methanol extract of the stem bark of Symphonia globulifera Linn f., which displayed good in vitro activity against Leishmania donovani NR-48822 promastigotes (IC(50) 43.11 µg/mL), led to the isolation of three previously unreported polyprenylated benzophenones, guttiferone U (1), V (2)/W (3), and a new tocotrienol derivative named globuliferanol (4), along with 11 known compounds (5–15). Their structures were elucidated based on their NMR and MS data. Some isolated compounds were assessed for both their antileishmanial and cytotoxic activities against L. donovani and Vero cells, respectively. Guttiferone K (5) exhibited the best potency (IC(50) 3.30 μg/mL), but with low selectivity to Vero cells. The n-hexane fraction and some compounds were also assessed in vitro for their antibacterial activity against seven bacterial strains. All the samples exhibited moderate to potent antibacterial activity (MICs ≤ 15.6 µg/mL) against at least one of the tested strains.
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spelling pubmed-100532302023-03-30 Constituents of the Stem Bark of Symphonia globulifera Linn. f. with Antileishmanial and Antibacterial Activities Nguengang, Ruland Tchuinkeu Tchegnitegni, Billy Toussie Nono, Eric Carly Nono Bellier Tabekoueng, Georges Fongang, Yannick Stéphane Fotsing Bankeu, Jean Jules Kezetas Chouna, Jean Rodolphe Nkenfou, Céline Nguefeu Fekam, Fabrice Boyom Sewald, Norbert Lenta, Bruno Ndjakou Molecules Article The chemical investigation of the n-hexane fraction from the methanol extract of the stem bark of Symphonia globulifera Linn f., which displayed good in vitro activity against Leishmania donovani NR-48822 promastigotes (IC(50) 43.11 µg/mL), led to the isolation of three previously unreported polyprenylated benzophenones, guttiferone U (1), V (2)/W (3), and a new tocotrienol derivative named globuliferanol (4), along with 11 known compounds (5–15). Their structures were elucidated based on their NMR and MS data. Some isolated compounds were assessed for both their antileishmanial and cytotoxic activities against L. donovani and Vero cells, respectively. Guttiferone K (5) exhibited the best potency (IC(50) 3.30 μg/mL), but with low selectivity to Vero cells. The n-hexane fraction and some compounds were also assessed in vitro for their antibacterial activity against seven bacterial strains. All the samples exhibited moderate to potent antibacterial activity (MICs ≤ 15.6 µg/mL) against at least one of the tested strains. MDPI 2023-03-08 /pmc/articles/PMC10053230/ /pubmed/36985446 http://dx.doi.org/10.3390/molecules28062473 Text en © 2023 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
Nguengang, Ruland Tchuinkeu
Tchegnitegni, Billy Toussie
Nono, Eric Carly Nono
Bellier Tabekoueng, Georges
Fongang, Yannick Stéphane Fotsing
Bankeu, Jean Jules Kezetas
Chouna, Jean Rodolphe
Nkenfou, Céline Nguefeu
Fekam, Fabrice Boyom
Sewald, Norbert
Lenta, Bruno Ndjakou
Constituents of the Stem Bark of Symphonia globulifera Linn. f. with Antileishmanial and Antibacterial Activities
title Constituents of the Stem Bark of Symphonia globulifera Linn. f. with Antileishmanial and Antibacterial Activities
title_full Constituents of the Stem Bark of Symphonia globulifera Linn. f. with Antileishmanial and Antibacterial Activities
title_fullStr Constituents of the Stem Bark of Symphonia globulifera Linn. f. with Antileishmanial and Antibacterial Activities
title_full_unstemmed Constituents of the Stem Bark of Symphonia globulifera Linn. f. with Antileishmanial and Antibacterial Activities
title_short Constituents of the Stem Bark of Symphonia globulifera Linn. f. with Antileishmanial and Antibacterial Activities
title_sort constituents of the stem bark of symphonia globulifera linn. f. with antileishmanial and antibacterial activities
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10053230/
https://www.ncbi.nlm.nih.gov/pubmed/36985446
http://dx.doi.org/10.3390/molecules28062473
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