Effect of Ultrasound-Treated Arabinoxylans on the Oxidative Stability of Soybean Oil

被引:10
作者
Mendez-Encinas, Mayra A. [1 ,2 ]
Carvajal-Millan, Elizabeth [1 ]
Ortega-Garcia, Jesus [2 ]
Santiago-Gomez, Lubitza B. [2 ]
De Anda-Flores, Yubia [1 ]
Martinez-Robinson, Karla G. [1 ]
Valencia-Rivera, Dora E. [2 ]
机构
[1] Res Ctr Food & Dev CIAD, Biopolymers, Hermosillo 83304, Sonora, Mexico
[2] Univ Sonora, Dept Chem Biol & Agropecuary Sci, Caborca 83621, Sonora, Mexico
关键词
arabinoxylan; ultrasonication; antioxidant capacity; rancimat method; oxidative stability; ANTIOXIDANT CAPACITY; FERULIC ACID; WHEAT; POLYSACCHARIDES; FRACTIONS; ROSEMARY; EXTRACT; BARLEY;
D O I
10.3390/antiox9020147
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Arabinoxylans (AX) are polysaccharides with antioxidant activity and emulsifying properties, which make them an attractive alternative for its potential application as a natural antioxidant in oils. Therefore, this work aimed to investigate the effect of ultrasonic treatment of AX on their antioxidant capacity and its ability to improve the oxidative stability of soybean oil. For this purpose, AX were exposed to ultrasonic treatment at 25% (100 W, AX-1) and 50% (200 W, AX-2) power and an operating frequency of 20 KHz during 15 min, and their macromolecular properties (weight average molecular weight (Mw), polydispersity index and intrinsic viscosity) were evaluated. The antioxidant capacity of AX was determined by the DPPH assay and Rancimat test. Results showed that ultrasonic treatment did not affect the molecular identity of the polysaccharide but modified its Mw distribution. AX-1 showed the highest antioxidant activity (75% inhibition) at 533 mu g/mL by the DPPH method compared to AX and AX-2. AX at 0.25% (w/v) and AX-1 at 0.01% (w/v) exerted the highest protective effects on oxidative stability of soybean oil with induction periods of 7.69 and 5.54 h, respectively. The results indicate that AX could be a good alternative for the potential application as a natural antioxidant in oils.
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页数:12
相关论文
共 42 条
[21]   Feruloylated Arabinoxylans from Maize Distiller's Dried Grains with Solubles: Effect of Feruloyl Esterase on their Macromolecular Characteristics, Gelling, and Antioxidant Properties [J].
Marquez-Escalante, Jorge A. ;
Carvajal-Millan, Elizabeth .
SUSTAINABILITY, 2019, 11 (22)
[22]   Effect of natural and synthetic antioxidants on the oxidative stability of walnut oil under different storage conditions [J].
Martinez, Marcela L. ;
Cecilia Penci, Ma. ;
Ixtaina, Vanesa ;
Ribotta, Pablo D. ;
Maestri, Damian .
LWT-FOOD SCIENCE AND TECHNOLOGY, 2013, 51 (01) :44-50
[23]   Arabinoxylan-Based Particles: In Vitro Antioxidant Capacity and Cytotoxicity on a Human Colon Cell Line [J].
Mendez-Encinas, Mayra A. ;
Carvajal-Millan, Elizabeth ;
Rascon-Chu, Agustin ;
Astiazaran-Garcia, Humberto ;
Valencia-Rivera, Dora E. ;
Brown-Bojorquez, Francisco ;
Alday, Efrain ;
Velazquez, Carlos .
MEDICINA-LITHUANIA, 2019, 55 (07)
[24]  
Mendez-Encinas MA, 2019, J APPL POLYM SCI, V136, DOI [10.1002/app.47300, 10.1002/APP.47300]
[25]   Antioxidant efficacy of potato peels and sugar beet pulp extracts in vegetable oils protection [J].
Mohdaly, Adel Abdelrazek Abdelazim ;
Sarhan, Mohamed Atef ;
Mahmoud, Awad ;
Ramadan, Mohamed Fawzy ;
Smetanska, Iryna .
FOOD CHEMISTRY, 2010, 123 (04) :1019-1026
[26]   Natural antioxidants from residual sources [J].
Moure, A ;
Cruz, JM ;
Franco, D ;
Domínguez, JM ;
Sineiro, J ;
Domínguez, H ;
Núñez, MJ ;
Parajó, JC .
FOOD CHEMISTRY, 2001, 72 (02) :145-171
[27]   Validated methods for the quantification of biologically active constituents of poplar-type propolis [J].
Popova, M ;
Bankova, V ;
Butovska, D ;
Petkov, V ;
Nikolova-Damyanova, B ;
Sabatini, AG ;
Marcazzan, GL ;
Bogdanov, S .
PHYTOCHEMICAL ANALYSIS, 2004, 15 (04) :235-240
[28]   Water soluble feruloyl arabinoxylans from rice and ragi: Changes upon malting and their consequence on antioxidant activity [J].
Rao, RSP ;
Muralikrishna, G .
PHYTOCHEMISTRY, 2006, 67 (01) :91-99
[29]   A dehydrotrimer of ferulic acid from maize bran [J].
Rouau, X ;
Cheynier, V ;
Surget, A ;
Gloux, D ;
Barron, C ;
Meudec, E ;
Louis-Montero, J ;
Criton, M .
PHYTOCHEMISTRY, 2003, 63 (08) :899-903
[30]  
Saulnier L., 2013, Reference Module in Chemistry, molecular Sciences and Chemical Engineering, P1, DOI [10.1016/B978-0-12-409547-2.01493-1, DOI 10.1016/B978-0-12-409547-2.01493-1]