Structural characterization, antioxidant, and antibiofilm activities of Coffea canephora green seeds

Author:

Aissaoui Mohammed1,Rahmoun Mohammed Nadjib1,Latrache Hassan2,Barek Said1,Elassri Ayoub2,Bensouici Chawki3,El Haci Imad Abdelhamid45,Choukchou-Braham Noureddine6

Affiliation:

1. Département de Biologie, Laboratoire Antibiotiques Antifongiques: Physico-Chimie, Synthèse et Activité Biologique, Faculté SNV-STU , University of Tlemcen , Tlemcen , Algeria

2. Laboratory of Bioprocess and Biointerfaces, Faculty of Sciences and Techniques , Sultan Moulay Slimane University , Beni Mellal , Morocco

3. Centre de Recherche en Biotechnologie Ali Mendjli Nouvelle Ville UV 03 BP E73 Constantine , Algeria

4. Département de Biologie , Centre de Recherche scientifique et technique en Analyses Physico-Chimiques (CRAPC) , Tipaza , Algeria

5. Laboratoire de Produits Naturels, Faculté SNV-STU , University of Tlemcen , Tlemcen , Algeria

6. Laboratoire de Catalyse et Synthèse en Chimie Organique, Faculté des Sciences , University of Tlemcen , Tlemcen , Algeria

Abstract

Abstract Objectives In order to explore Coffea canephora green seeds as natural extract for application in the functional-food industry, we focused this study to the evaluation of the antioxidant and the antiadhesion effect of C. canephora green seeds extracts. Methods The analysis of C. canephora green seeds extracts was carried out by RP-HPLC-PDA. These extracts were screened for antioxidant activities by ABTS and phenanthroline assays. The antibacterial activity was determined by microdilution method against three reference bacteria. The inhibition of bacterial adhesion at 1/8 MIC was carried out against three reference bacteria. Results The RP-HPLC-PDA revealed the presence of gallic acid, vanillin, quercetin, chlorogenic acid, and P-coumaric acid. The n-buatnol extract have the highest activity ABTS assays (3.96 ± 0.08 μg/mL). For this extract, the A0.5 was 1.90 ± 0.05 μg/mL for phenanthroline assay. The n-butanol extract and the methanolic extract have the higher antibacterial activity against Staphylococcus aureus ATCC 25923 (40 µg/mL).At MIC/8, the extracts of C. canephora showed 70% higher antidhesive activity against S. aureus ATCC 25923. Conclusions Our finding provides an effective and specific new approach to the search of antioxidant and antiadhesive compounds for different uses.

Publisher

Walter de Gruyter GmbH

Subject

Complementary and alternative medicine

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