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Control of Staphylococcus aureus methicillin resistant isolated from auricular infections using aqueous and methanolic extracts of Ephedra alata
Authors:Amal Dbeibia  Fadia Ben Taheur  Khadijah A Altammar  Najla Haddaji  Abdelkarim Mahdhi  Zahra Amri  Ridha Mzoughi  Chdia Jabeur
Institution:1. Laboratory of Analysis, Treatment and Valorization of Environmental Pollutants and Products, Faculty of Pharmacy, Monastir University, Tunisia;2. Department of Biology, College of Science, University of Hafr Al Batin, P. O. Box 1803, Hafr Al Batin 31991, Saudi Arabia;3. Faculty of Sciences, University of Hail, Al Ghazalah, Hail, Saudi Arabia;4. Biochemistry Laboratory, LR12ES05 “Nutrition-functional Foods and Vascular Health”, Faculty of Medicine, University of Monastir, Monastir, Tunisia;5. High Institute of Biotechnology of Monastir, P. BOX 74, 5000 Monastir, Tunisia
Abstract:In the current study the potential use of aqueous and methanolic extracts of Ephedra alata aerial parts as biological control agent against pathogenic bacteria and especially Staphylococcus aureus methicillin resistant isolated from auricular infections was evaluated. Chemical tests and spectrophotometric methods were used for screening and quantification of phytochemicals. The assessment of the antioxidant activity was accomplished by DPPH and ABTS radicals scavenging assays. Extracts were evaluated for their antibacterial efficacy by diffusion and microdilution methods. Biofilm inhibition was tested using XTT assay and the cytotoxicity of extracts was carried out on Vero cell line. The GC-FID analysis revealed that E. alata was rich in unsatured fatty acids. In addition, the aqueous extract had the highest flavonoid and protein contents (30.82 mg QE /g dry extract and 98.92 mg BSAE/g dry extract respectively). However, the methanolic extract had the highest phenolic, sugars and tannins. The antioxidant activity demonstrated that the aqueous extract exhibited the strong potency (IC50 ranged between 0.001 and 0.002 mg/mL).Both extracts displayed antimicrobial activity on Gram negative and positive strains. They were effective against S. aureus isolated from auricular infections. The tested extracts were able to inhibit biofilm formation with concentration-dependent manner.Moreover, no cytotoxic effect on Vero cells line was demonstrated for the extracts. Overall, our findings highlight the potential use of E. alata extract as a novel source of bioactive molecules with antioxidant, antibacterial and antiobiofilm effects for the control of infectious disease especially those associated to S. aureus methicillin resistant.
Keywords:Mineral composition  Fatty acids  Antioxidant effect  Antibacterial potency  Antibiofilm activity  Cytotoxicity
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