Optimum Conditions and LC-ESI-MS Analysis of Phenolic Rich Extract from Eucalyptus marginata L. Under Maceration and Ultrasound-Assisted Extraction Methods Using Response Surface Methodology

被引:11
|
作者
Hasni S. [1 ]
Rigane G. [1 ,2 ]
Ghazghazi H. [3 ]
Riguene H. [1 ]
Bouallegue A. [4 ]
Khedher O. [1 ]
Oueslati M.A. [5 ]
Ben Salem R. [1 ]
机构
[1] Laboratory of Organic Chemistry LR17ES08, Sciences Faculty of Sfax, University of Sfax, B.P 1171, Sfax
[2] Physic and Chemistry Department, Faculty of Sciences and Technology of Sidi Bouzid, University of Kairouan, B.P 380 9100, Sidi Bouzid, Kairouan
[3] Laboratory of Management and Valorization of Forest Resources, National Research Institute of Rural Engineering, Water and Forestry (INRGREF), Kairouan
[4] Laboratory for the Improvement of Plants and Valorization of Agro-Ressources, National School of Engineering of Sfax (ENIS), University of Sfax, Sfax
[5] College of Applied Medical Sciences Al Jubail, Deanship of Preparatory Year and Supporting Studies, Department of Respiratory Care, Imam Abdulrahman Bin Faisal University, PO. Box 1982, Dammam
关键词
Surface properties - Ethanol - Flavonoids - Plant extracts - Extraction - Phenols - Ultrasonic applications;
D O I
10.1155/2021/5591022
中图分类号
学科分类号
摘要
Eucalyptus marginata L. has a significant value in traditional medicine and recently has been shown to possess many pharmacological properties in vitro. The main goal of the present study was to optimize the extraction parameters of phenolic compounds from Eucalyptus marginata L. leaves using the extraction technique assisted by ultrasound in comparison with maceration using response surface methodology as a predicted tool. Therefore, total phenolic and flavonoid contents have been optimized, taking into account four variables: extraction time, temperature, liquid-to-solid ratio, and ethanol concentration. The optimum ultrasound-assisted extraction method for total phenolic and total flavonoid contents was obtained by ensuring the following parameters: t = 49.9 min, T = 74.9°C, liquid-to-solid ratio = 39.5 ml/g, and ethanol = 58.48%. The optimum extract has been subjected to LC-ESI-MS analysis. This technique allowed us to identify ten phenolic compounds: four phenolic acids mainly gallic acid (27.77 ± 0.06 μg/g DW) and protocatechuic acid (37.66 ± 0.04 μg/g DW) and six flavonoid compounds such as quercetrin (150.78 ± 0.02 μg/g DW) and hyperoside (39.19 ± 0.03 μg/g DW). These green and efficient procedures should be a promising option to guide industrial design for the production of phenolic-rich plant extracts. © 2021 Soumaya Hasni et al.
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