Zhang Wenjuan, Zhao Panpan, Li Jinzhe, Wang Xindi, Hou Juncai, Jiang Zhanmei
Key Laboratory of Dairy Science (Northeast Agricultural University), Ministry of Education, Harbin 150030, PR China.
Key Laboratory of Dairy Science (Northeast Agricultural University), Ministry of Education, Harbin 150030, PR China.
Ultrason Sonochem. 2022 Feb;83:105935. doi: 10.1016/j.ultsonch.2022.105935. Epub 2022 Jan 29.
In the present study, ultrasound (400 W, U), microwave heating (75 ℃ for 15 min, M) and ultrasound synergized with microwave heating (UM) pretreatments of whey protein isolate (WPI) were applied to investigate and compare their influence on structure, physicochemical and functional characteristic of transglutaminase (TGase)-induced WPI. From the results of size exclusion chromatography, it could be seen that all three physical pretreatments could promote the formation of polymers in TGase cross-linked WPI, whose polymer amounts were increased by the order of U, UM and M pretreatment. Among three physical methods, M pretreatment had the strongest effect on structure and functional characteristics of TGase-induced WPI. Furthermore, compared with TGase-induced WPI, α-helix and β-turn of M-treated TGase-induced WPI (M-WPI-TGase) were reduced by 7.86% and 2.93%, whereas its β-sheet and irregular curl were increased by 15.37% and 7.23%. Zeta potential, emulsion stability and foaming stability of M-WPI-TGase were increased by 7.8%, 59.27% and 28.95%, respectively. This experiment exhibited that M was a more effective pretreatment method than U, UM for WPI, which could promote its reaction with TGase and improve its functional properties.
在本研究中,采用超声(400W,U)、微波加热(75℃,15分钟,M)以及超声协同微波加热(UM)对乳清蛋白分离物(WPI)进行预处理,以研究和比较它们对转谷氨酰胺酶(TGase)诱导的WPI的结构、理化性质及功能特性的影响。从尺寸排阻色谱结果可以看出,所有这三种物理预处理均可促进TGase交联WPI中聚合物的形成,聚合物含量按U、UM和M预处理的顺序增加。在这三种物理方法中,M预处理对TGase诱导的WPI的结构和功能特性影响最强。此外,与TGase诱导的WPI相比,经M处理的TGase诱导的WPI(M-WPI-TGase)的α-螺旋和β-转角分别降低了7.86%和2.93%,而其β-折叠和无规卷曲分别增加了15.37%和7.23%。M-WPI-TGase的ζ电位、乳液稳定性和泡沫稳定性分别提高了7.8%、59.27%和28.95%。该实验表明,对于WPI而言,M是比U、UM更有效的预处理方法,其可促进WPI与TGase的反应并改善其功能特性。