School of Food and Nutritional Sciences, University College Cork, Cork, Ireland.
J Agric Food Chem. 2011 Jul 13;59(13):7013-20. doi: 10.1021/jf200841k. Epub 2011 Jun 7.
Inclusion of liposoluble bioactive compounds in fortified foods represents a complex challenge due to the labile nature of such compounds and the instability of oil-in-water emulsion-based delivery systems. In the present study, dispersions prepared with 10% (w/w) sunflower oil (SO) or hydrogenated palm kernel oil (HPKO) containing 0.05% (w/w) β-carotene were stabilized by various concentrations of whey protein isolate (WPI) or sodium caseinate (NaCas) (0.1 to 2.0% w/w) in 30% (w/w) sucrose aqueous solutions. Physicochemical characterization of emulsions was done considering the particle size, the particle surface protein coverage, and the physical state of continuous and dispersed phases. Physical stability of the systems and their protection properties on β-carotene were compared. The lipid carrier type and interfacial structure were investigated as the two key factors which regulate the stability of labile lipophilic bioactive molecules in food model systems. Our results showed high β-carotene stability when O/W systems were stable (protein concentration ≥0.8% w/w.) A (partially) solid lipid carrier (HPKO) enhanced protection compared to the liquid carrier (SO) as the bioactive molecules were entrapped in isolated domains within the solid lattice and kept apart from reactive species in the surroundings. NaCas provided a better barrier than WPI due to the different amino acid composition and interface structure which significantly reduced β-carotene degradation rate.
在强化食品中添加脂溶性生物活性化合物是一个复杂的挑战,因为这些化合物的不稳定性和油包水乳液传递系统的不稳定性。在本研究中,使用 10%(w/w)葵花籽油(SO)或氢化棕榈仁油(HPKO)制备了含有 0.05%(w/w)β-胡萝卜素的分散体,通过不同浓度的乳清蛋白分离物(WPI)或酪蛋白酸钠(NaCas)(0.1 至 2.0% w/w)稳定在 30%(w/w)蔗糖水溶液中。考虑到粒径、颗粒表面蛋白质覆盖率以及连续相和分散相的物理状态,对乳液进行了物理化学特性分析。比较了系统的物理稳定性及其对β-胡萝卜素的保护性能。研究了脂质载体类型和界面结构作为调节食品模型系统中不稳定亲脂性生物活性分子稳定性的两个关键因素。我们的结果表明,当 O/W 系统稳定时(蛋白质浓度≥0.8% w/w),β-胡萝卜素具有很高的稳定性。与液体载体(SO)相比,部分固体脂质载体(HPKO)增强了保护作用,因为生物活性分子被包埋在固体晶格中的隔离区域中,并与周围的反应性物质隔离。由于不同的氨基酸组成和界面结构,NaCas 比 WPI 提供了更好的屏障,这显著降低了β-胡萝卜素的降解速率。