Ultrasound-Assisted Green Extraction of Eggplant Peel (Solanum melongena) Polyphenols Using Aqueous Mixtures of Glycerol and Ethanol: Optimisation and Kinetics

被引:58
作者
Philippi K. [1 ]
Tsamandouras N. [1 ]
Grigorakis S. [2 ]
Makris D.P. [1 ]
机构
[1] School of Environment, University of the Aegean, Mitr. Ioakim Street, Myrina, 81400, Lemnos
[2] Food Quality & Chemistry of Natural Products, International Centre for Advanced Mediterranean Agronomic Studies (CIHEAM), P.O. Box 85, Chania
关键词
Antioxidants; Eggplant polyphenols; Glycerol as extraction solvent; Green solvents; Ultrasound-assisted extraction;
D O I
10.1007/s40710-016-0140-8
中图分类号
学科分类号
摘要
Eggplant peels were used to evaluate glycerol and ethanol for their ability to recover polyphenolic antioxidants. The evaluation was based on optimisation by a Box-Behnken experimental design and kinetics. The results showed that extraction with water/ethanol and water/glycerol mixtures, under optimised conditions, afforded virtually equal yield in total polyphenols, which was 13.40 and 13.51 mg caffeic acid equivalents per g dry weight, respectively. The extraction kinetics revealed that diffusion of phenolics in water/glycerol mixtures was slower (0.85 × 10−12 m2 s−1) compared with the one attained with water/ethanol (2.23 × 10−12 m2 s−1), yet the ability of both systems to recover essentially the same levels of total polyphenols was confirmed. The determination of total chlorogenates, total flavonoids and total pigments indicated that water/glycerol might be a more effective solvent system, but controversies were observed with regard to the antiradical activity and reducing power. The analytical polyphenolic profile of both extracts was dominated by chlorogenic acid and no major differences were recorded, a finding indicating that none of the solvent systems displayed selectivity. The results suggested that glycerol may be an ideal candidate for use in eco-friendly extraction processes. © 2016, Springer International Publishing Switzerland.
引用
收藏
页码:369 / 386
页数:17
相关论文
共 39 条
[1]  
Alluis B., Dangles O., Quercetin (=2‐(3, 4‐Dihydroxyphenyl)‐3, 5, 7‐trihydroxy‐4H‐1‐benzopyran‐4‐one) glycosides and sulfates: chemical synthesis, complexation, and antioxidant properties, Helv Chim Acta, 84, 5, pp. 1133-1156, (2001)
[2]  
Amyrgialaki E., Makris D.P., Mauromoustakos A., Kefalas P., Optimisation of the extraction of pomegranate (Punica granatum) husk phenolics using water/ethanol solvent systems and response surface methodology, Ind Crop Prod, 59, pp. 216-222, (2014)
[3]  
Apostolakis A., Grigorakis S., Makris D.P., Optimisation and comparative kinetics study of polyphenol extraction from olive leaves (Olea europaea) using heated water/glycerol mixtures, Sep Purif Technol, 128, pp. 89-95, (2014)
[4]  
Arancon R.A.D., Lin C.S.K., Chan K.M., Kwan T.H., Luque R., Advances on waste valorization: new horizons for a more sustainable society, Energy Sci Eng, 1, 2, pp. 53-71, (2013)
[5]  
Babbar N., Oberoi H.S., Sandhu S.K., Therapeutic and nutraceutical potential of bioactive compounds extracted from fruit residues, Crit Rev Food Sci Nutr, 55, 3, pp. 319-337, (2015)
[6]  
Baiano A., Recovery of biomolecules from food wastes—a review, Molecules, 19, 9, pp. 14821-14842, (2014)
[7]  
Bazykina N., Nikolaevskii A., Filippenko T., Kaloerova V., Optimization of conditions for the extraction of natural antioxidants from raw plant materials, Pharm Chem J, 36, 2, pp. 46-49, (2002)
[8]  
Boulekbache-Makhlouf L., Medouni L., Medouni-Adrar S., Arkoub L., Madani K., Effect of solvents extraction on phenolic content and antioxidant activity of the byproduct of eggplant, Ind Crop Prod, 49, pp. 668-674, (2013)
[9]  
Cavdarova M., Makris D.P., Extraction kinetics of phenolics from carob (Ceratonia siliqua L.) kibbles using environmentally benign solvents, Waste Biomass Valoriz, 5, 5, pp. 773-779, (2014)
[10]  
Chatterjee D., Jadhav N.T., Bhattacharjee P., Solvent and supercritical carbon dioxide extraction of color from eggplants: characterization and food applications, LWT-Food Sci Technol, 51, 1, pp. 319-324, (2013)