Centre of Biological Engineering, University of Minho, Campus de Gualtar, 4710-057 Braga, Portugal.
Food Funct. 2017 Nov 15;8(11):4241-4250. doi: 10.1039/c7fo00953d.
This study was aimed at evaluating the physical conformation and oxidative stability of beeswax oleogels when fortified by the incorporation of β-carotene (complex-beeswax oleogels). Rheological evaluation showed the presence of a strengthened structural conformation in the oleogels with β-carotene in comparison with that in oleogels without β-carotene; this was verified by the increase in rheological parameters. Small angle X-ray scattering data show that the lamellar crystal structure of the oleogels with β-carotene exhibits similar d-spacings and lower radius of gyration (R) values for all concentrations due to the stronger oleogel network. X-ray diffraction measurements provide useful information on the crystal polymorphism type and arrangement of the internal lamellar phases of the crystals. Oil binding capacity is also affected by the incorporation of β-carotene into the oleogel and proven to be higher for the complex-beeswax oleogels, which enhances the ability of the oleogels to retain an oil phase within their crystalline network. The oxidative profiles of the complex-beeswax oleogels were studied during storage, and beeswax at the concentrations of 4, 6, and 8% revealed higher oxidative stability than that at the concentration of 2%. In this study, the possibility of tailoring the properties of oleogels is demonstrated considering the foreseen applications of oleogels in food products, such as in texturizers, as well their capacity to deliver bioactives and thus add value to food products.
本研究旨在评估蜂蜡油凝胶的物理形态和氧化稳定性,方法是在其中掺入β-胡萝卜素(复合蜂蜡油凝胶)。流变学评估表明,与不含β-胡萝卜素的油凝胶相比,含β-胡萝卜素的油凝胶具有更强的结构构象;这可以通过流变学参数的增加来验证。小角 X 射线散射数据表明,含β-胡萝卜素的油凝胶的层状晶体结构表现出相似的 d 间距和较低的回转半径(R)值,这是由于更强的油凝胶网络所致。X 射线衍射测量提供了有关晶体多晶型类型和内部层状相排列的有用信息。油结合能力也受到β-胡萝卜素掺入油凝胶的影响,证明复合蜂蜡油凝胶的油结合能力更高,从而增强了油凝胶在其晶体网络中保留油相的能力。在储存过程中研究了复合蜂蜡油凝胶的氧化曲线,浓度为 4%、6%和 8%的蜂蜡显示出比浓度为 2%的蜂蜡更高的氧化稳定性。在这项研究中,考虑到油凝胶在食品产品中的预期应用,例如作为质构剂,以及它们传递生物活性物质的能力,从而为食品产品增加价值,展示了定制油凝胶性质的可能性。