Cytotoxicity and Identification of Antibacterial Compounds from Baillonella toxisperma Bark Using a LC-MS/MS and Molecular Networking Approach

Author:

Essono Mintsa Morel123ORCID,Kumulungui Brice Serge2,Obiang Cédric Sima4,Dussert Elodie5,Choque Elodie1ORCID,Herfurth Damien1,Ravallec Rozenn5ORCID,Ondo Joseph-Privat4,Mesnard François1

Affiliation:

1. UMRt BioEcoAgro 1158-INRAE, BIOPI, Université de Picardie Jules Verne, 1 Rue des Louvels, 80000 Amiens, France

2. Centre Interdisciplinaire de Recherches Médicales de Franceville (CIRMF), Franceville P.O. Box 769, Gabon

3. Laboratoire Innovation Matériau Bois Habitat (LIMBHA), Ecole Supérieure du Bois, 7 Rue Christian Pauc, 44306 Nantes, France

4. Laboratoire de Recherches en Biochimie (LAREBIO), Université des Sciences et Techniques de Masuku, Franceville P.O. Box 943, Gabon

5. UMRt BioEcoAgro 1158-INRAE, Institut Charles Violette, Université de Lille, 59655 Lille, France

Abstract

Baillonella toxisperma is a medicinal plant used in northern Gabon to treat microbial diseases. It is a plant well-known by local populations, but very few studies have focused on the molecules responsible for the antibacterial activities of B. toxisperma. This study proposes a dereplication strategy based on molecular networking generated from HPLC-ESI-Q/TOF data, allowing investigation of the molecules responsible for the antibacterial activity of B. toxisperma. From this strategy, eighteen compounds were putatively identified. All of these compounds belonged mainly to five families of natural compounds, including phenylpropanolamines, stilbenes, flavonoids, lignans and phenolic glycosides. The chemical study carried out from the bark of B. toxisperma allowed us to identify, for the first time, compounds such as resveratrol and derivatives, epicatechin, epigallocatechin and epigallocatechin gallate. In addition, antibacterial activity (diffusion method and microdilution) and cytotoxicity (Cell Counting Kit-8 (CCK-8 Assay)) in vitro were evaluated. The crude ethanolic extract, as well as the fractions of B. toxisperma, showed significant antibacterial activity. However, the ethanolic fractions F2 and F4 presented high antibacterial activity compared to the crude extract. Cytotoxicity studies on colon-cancer cells (Caco-2) and human keratinocyte cells (HaCaT) showed moderate cytotoxicity in both cell types. This study clearly shows the therapeutic potential of the ethanolic extract of the bark of B. toxisperma and provides information on the phytochemical composition and bioactive compounds of the plant.

Publisher

MDPI AG

Subject

Molecular Biology,Biochemistry,Endocrinology, Diabetes and Metabolism

Reference59 articles.

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2. Moabi (Baillonella toxisperma Pierre): Arbre à Usage Multiple de Forêt Dense Humide Du Cameroun;Ngueguim;Int. J. Biol. Chem. Sci.,2012

3. Baillonella toxisperma Improves Sexual Performance and Protects against Stress-Induced Reproductive Dysfunction in Male Wistar Rats;Simo;J. Phytopharm.,2019

4. Antioxidant Activities, Total Phenolic Contents and Chemical Compositions of Extracts from Four Cameroonian Woods: Padouk (Pterocarpus Soyauxii Taubb), Tali (Erythrophleum Suaveolens), Moabi (Baillonella toxisperma), and Movingui (Distemonanthus Benthamianus);Saha;Ind. Crops Prod.,2013

5. Isolation and Characterization of 15 Nuclear Microsatellite Markers for Baillonella toxisperma Pierre (Sapotaceae), a Low-Density Tree Species of Central Africa;Vaillant;Mol. Ecol. Resour.,2009

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