Freezing effect on the oleuropein content of olive leaves extracts obtained from microwave-assisted extraction

被引:0
作者
T. Renata Martiny
G. Luiz Dotto
V. Raghavan
C. Costa de Moraes
G. Silveira da Rosa
机构
[1] Federal University of Santa Maria,Department of Chemical Engineering
[2] McGill University,Department of Bioresource Engineering
[3] Federal University of Pampa,Department of Food Engineering
[4] Federal University of Pampa,Department of Chemical Engineering
来源
International Journal of Environmental Science and Technology | 2022年 / 19卷
关键词
Phenolic compounds; Olive by-product; Olive tree residues; L.; Bioactive compounds; Frozen storage;
D O I
暂无
中图分类号
学科分类号
摘要
This work aimed to investigate the effect of freezing on the oleuropein content obtained from olive leaves extracts. The extracts were obtained by microwave-assisted extraction using different solvents, pH, temperatures and microwave irradiation time. Afterward, HPLC was used to identify and quantify the amount of oleuropein in the extracts. A part of the extracts was immediately analyzed, and another was frozen for a week. The experimental results highlighted that the storage condition has a significant (p < 0.05) effect on the oleuropein content. Regardless of the extraction condition, the frozen storage was responsible for a decrease in the oleuropein content, ranging from 5.38 to 70.09%. These results indicate that it is important to consider the degradation of oleuropein in frozen olive leaf extracts so that subsequent applications are suitable.
引用
收藏
页码:10375 / 10380
页数:5
相关论文
共 50 条
[41]   Improving the Efficiency of Antioxidant Extraction from Mango Peel by Using Microwave-assisted Extraction [J].
Dorta, Eva ;
Gloria Lobo, M. ;
Gonzalez, Monica .
PLANT FOODS FOR HUMAN NUTRITION, 2013, 68 (02) :190-199
[42]   Optimization of microwave-assisted extraction of phenolics from blueberry [J].
Elik, Aysel ;
Yanik, Derya Kocak ;
Gogus, Fahrettin .
ROMANIAN BIOTECHNOLOGICAL LETTERS, 2019, 24 (01) :30-40
[43]   Improved antioxidant activities of brown seaweed Ecklonia radiata extracts prepared by microwave-assisted enzymatic extraction [J].
Charoensiddhi, Suvimol ;
Franco, Chris ;
Su, Peng ;
Zhang, Wei .
JOURNAL OF APPLIED PHYCOLOGY, 2015, 27 (05) :2049-2058
[44]   Microwave-assisted Extraction of Flavonoids from Phyllostachys heterocycla Leaves: Optimization, Mechanism, and Antioxidant Activity in vitro [J].
Xu, Jie ;
Wu, Jianjun ;
Qi, Juan ;
Li, Juan ;
Liu, Yongju ;
Miao, Zekai ;
Qiu, Guofeng ;
Jia, Wenke .
BIORESOURCES, 2021, 16 (04) :8060-8081
[45]   Optimisation of microwave-assisted extraction of triterpenoic acids from olive mill waste using response surface methodology [J].
Ozkan, G. ;
Karacabey, E. ;
Arslan, N. ;
Odabasi, N. .
QUALITY ASSURANCE AND SAFETY OF CROPS & FOODS, 2017, 9 (02) :179-185
[46]   Optimization of Conditions for Microwave-Assisted Extraction of Polyphenols from Olive Pomace of Zutica Variety: Waste Valorization Approach [J].
Mardokic, Ana ;
Maldonado, Angela Estefania ;
Klosz, Katalin ;
Molnar, Mate Andras ;
Vatai, Gyula ;
Banvolgyi, Szilvia .
ANTIOXIDANTS, 2023, 12 (06)
[47]   Reduced pressure extraction of oleuropein from olive leaves (Olea europaea L.) with ultrasound assistance [J].
Xie, Pu-jun ;
Huang, Li-xin ;
Zhang, Cai-hong ;
You, Feng ;
Zhang, Yao-lei .
FOOD AND BIOPRODUCTS PROCESSING, 2015, 93 :29-38
[48]   Utilization of olive pomace as a source of polyphenols: Optimization of microwave-assisted extraction and characterization of spray-dried extract [J].
Jurmanovic, Sanja ;
Jug, Mario ;
Safner, Toni ;
Radic, Kristina ;
Domijan, Ana-Marija ;
Pedisic, Sandra ;
Simic, Sanja ;
Jablan, Jasna ;
Cepo, Dubravka Vitali .
JOURNAL OF FOOD AND NUTRITION RESEARCH, 2019, 58 (01) :51-62
[49]   Hypolipidimic and antioxidant activities of oleuropein and its hydrolysis derivative-rich extracts from Chemlali olive leaves [J].
Jemai, Hedya ;
Bouaziz, Mohamed ;
Fki, Ines ;
El Feki, Abdelfattah ;
Sayadi, Sami .
CHEMICO-BIOLOGICAL INTERACTIONS, 2008, 176 (2-3) :88-98
[50]   Optimisation and validation of the microwave-assisted extraction of phenolic compounds from rice grains [J].
Setyaningsih, W. ;
Saputro, I. E. ;
Palma, M. ;
Barroso, C. G. .
FOOD CHEMISTRY, 2015, 169 :141-149