Partanen Riitta, Raula Janne, Seppänen Rauni, Buchert Johanna, Kauppinen Esko, Forssell Pirkko
VTT Technical Research Centre of Finland, Espoo, Finland.
J Agric Food Chem. 2008 Jul 23;56(14):5717-22. doi: 10.1021/jf8005849. Epub 2008 Jun 24.
Flaxseed oil was emulsified in whey protein isolate (WPI) and spray-dried. Powder characteristics and oxidative stability of oil at relative humidities (RH) from RH approximately 0% to RH 91% at 37 degrees C were analyzed. Oil droplets retained their forms in drying and reconstitution, but the original droplet size of the emulsion was not restored when the powder was dispersed in water. The particles seemed to be covered by a protein-rich surface layer as analyzed by electron spectroscopy for chemical analysis (ESCA). Oxidation of flaxseed oil dispersed in the WPI matrix was retarded from that of bulk oil but followed the same pattern as bulk oil with respect to humidity. A high rate of oxidation was found for both low and high humidity conditions. The lowest rate of oxidation as followed by peroxide values was found at RH 75%, a condition that is likely to diverge significantly from the monolayer moisture value. A weak baseline transition observed for the WPI matrix in a differential scanning calorimetry (DSC) thermogram suggested a glassy state of the matrix at all storage conditions. This was not consistent with the observed caking of the powder at RH 91%. Scanning electron microscopy (SEM) images revealed a considerable structural change in the WPI matrix in these conditions, which was suggested to be linked with a higher rate of oxygen transport. Possible mechanisms for oxygen transport in the whey protein matrix under variable RHs are discussed.
将亚麻籽油在乳清蛋白分离物(WPI)中乳化并进行喷雾干燥。分析了在37℃下相对湿度(RH)从约0%至91%时粉末的特性以及油的氧化稳定性。油滴在干燥和复溶过程中保持其形态,但当粉末分散在水中时,乳液的原始液滴尺寸并未恢复。通过化学分析电子能谱(ESCA)分析发现,颗粒似乎被富含蛋白质的表面层覆盖。分散在WPI基质中的亚麻籽油的氧化比散装油的氧化受到抑制,但在湿度方面与散装油遵循相同的模式。在低湿度和高湿度条件下均发现氧化速率较高。通过过氧化值得出,在RH 75%时氧化速率最低,这一条件可能与单层水分值有显著差异。在差示扫描量热法(DSC)热重曲线中观察到的WPI基质的弱基线转变表明,在所有储存条件下基质均处于玻璃态。这与在RH 91%时观察到的粉末结块现象不一致。扫描电子显微镜(SEM)图像显示在这些条件下WPI基质有相当大的结构变化,这被认为与较高的氧气传输速率有关。讨论了在可变相对湿度下乳清蛋白基质中氧气传输的可能机制。