Shi Meng, Huang Long-Yue, Nie Ning, Ye Jian-Hui, Zheng Xin-Qiang, Lu Jian-Liang, Liang Yue-Rong
Zhejiang University Tea Research Institute, Hangzhou 310058, China.
Zhejiang University Tea Research Institute, Hangzhou 310058, China..
Food Res Int. 2017 Mar;93:1-7. doi: 10.1016/j.foodres.2017.01.006. Epub 2017 Jan 7.
Rice bran protein isolate (RBPI) was prepared from defatted rice bran and used to deliver tea catechins. RBPI had the high adsorption selectivity for tea catechins over caffeine. The adsorption characteristics of tea catechins onto RBPI were determined over a range of time (0-300min), concentration (0.25-3.5gL) and temperatures (5°C, 20°C and 35°C). The adsorption kinetic data of EGCg and total catechins (TC) onto RBPI showed excellent fitness with the pseudo-second-order model, indicating that chemisorption is the dominating process. Langmuir and Freundlich models adequately described the isothermal adsorption of tea catechins onto RBPI, and the maximum adsorption of EGCg and TC were achieved at 5°C. SDS-PAGE profiles indicated that globulin and albumin were the major soluble proteins in RBPI to bind tea catechins. Fourier transforms infrared spectroscopy analysis showed that the protein secondary structures of RBPI were altered upon interaction with catechins, with a great increase in random coil and β-antiparallel, a minor increase in α-helix and a reduction in large loop and turn. Binding tea catechins to RBPI respectively increased the recovery% of EGCg and TC from 10.5% and 17.7% to 29.5% and 31.6% after in vitro intestinal digestion. Thus, RBPI is a promising food matrix for delivering tea catechins to gastrointestinal tract.
米糠分离蛋白(RBPI)由脱脂米糠制备而成,并用于递送茶儿茶素。与咖啡因相比,RBPI对茶儿茶素具有较高的吸附选择性。在一系列时间(0 - 300分钟)、浓度(0.25 - 3.5 g/L)和温度(5℃、20℃和35℃)范围内测定了茶儿茶素在RBPI上的吸附特性。表没食子儿茶素没食子酸酯(EGCg)和总儿茶素(TC)在RBPI上的吸附动力学数据与准二级模型拟合良好,表明化学吸附是主导过程。Langmuir模型和Freundlich模型充分描述了茶儿茶素在RBPI上的等温吸附,EGCg和TC的最大吸附量在5℃时达到。十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳(SDS - PAGE)图谱表明球蛋白和白蛋白是RBPI中结合茶儿茶素的主要可溶性蛋白质。傅里叶变换红外光谱分析表明,RBPI的蛋白质二级结构在与儿茶素相互作用后发生了改变,无规卷曲和β - 反平行结构大幅增加,α - 螺旋略有增加,大的环和转角减少。在体外肠道消化后,将茶儿茶素与RBPI结合分别使EGCg和TC的回收率从10.5%和17.7%提高到29.5%和31.6%。因此,RBPI是一种将茶儿茶素递送至胃肠道的有前景的食物基质。