Sun Libin, Wang Hong, Du Jing, Wang Tong, Yu Dianyu
School of Food Science, Northeast Agricultural University, Harbin 150030, China; School of Grain Science and Technology, Jilin Business And Technology College, Changchun 130507, China.
School of Grain Science and Technology, Jilin Business And Technology College, Changchun 130507, China.
Ultrason Sonochem. 2024 May;105:106856. doi: 10.1016/j.ultsonch.2024.106856. Epub 2024 Mar 26.
The residue remaining after oil extraction from grape seed contain abundant procyanidins. An ultrasonic-assisted enzyme method was performed to achieve a high extraction efficiency of procyanidins when the optimal extraction conditions were 8 U/g of cellulase, ultrasound power of 200 W, ultrasonic temperature of 50 ℃, and ultrasonic reaction time of 40 min. The effects of free procyanidins on both radical scavenging activity and thermal stability at 40, 60, and 80 ℃ of the procyanidins-loaded liposomal systems prepared by the ultrasonic-assisted method were discussed. The presence of procyanidins at concentrations ranging from 0.02 to 0.10 mg/mL was observed to be effective at inhibiting lipid oxidation by 15.15 % to 69.70 % in a linoleic acid model system during reaction for 168 h, as measured using the ferric thiocyanate method. The procyanidins-loaded liposomal systems prepared by the ultrasonic-assisted method were characterized by measuring the mean particle size and encapsulation efficiency. Moreover, the holographic plots showed that the effect-response points of procyanidins combined with α-tocopherol in liposomes were lower than the addition line and 95 % confidence interval limits. At the same time, there were significant differences between the theoretical IC value and the experimental IC value. The interaction index (γ) of all combinations was observed to be less than 1. These results indicated that there was a synergistic antioxidant effect between procyanidins combined with α-tocopherol, which will show promising prospects in practical applications. In addition, particle size differentiation and morphology agglomeration were observed at different time points of antioxidant activity determination (0, 48, 96 h).
从葡萄籽中提取油脂后剩余的残渣含有丰富的原花青素。采用超声辅助酶法在纤维素酶用量8 U/g、超声功率200 W、超声温度50℃、超声反应时间40 min的最佳提取条件下实现了原花青素的高效提取。讨论了游离原花青素对超声辅助法制备的载原花青素脂质体系统在40、60和80℃下的自由基清除活性和热稳定性的影响。采用硫氰酸铁法测定,发现在亚油酸模型系统中反应168 h时,浓度为0.02至0.10 mg/mL的原花青素能够有效抑制脂质氧化15.15%至69.70%。通过测量平均粒径和包封率对超声辅助法制备的载原花青素脂质体系统进行了表征。此外,全息图显示原花青素与脂质体中α-生育酚结合的效应响应点低于添加线和95%置信区间界限。同时,理论IC值与实验IC值之间存在显著差异。观察到所有组合的相互作用指数(γ)均小于1。这些结果表明原花青素与α-生育酚之间存在协同抗氧化作用,在实际应用中具有广阔前景。此外,在抗氧化活性测定的不同时间点(0、48、96 h)观察到粒径差异和形态团聚现象。