Okubanjo Sewuese S, Brooke Sam J, Ward Rob, Mostert Nic, Loveday Simon M, Ye Aiqian, Wilde Peter J, Singh Harjinder, Waterland Mark
Riddet Institute, Massey University, Private Bag 11222, Palmerston North, 4442, New Zealand.
Norwegian University of Science and Technology (NTNU), Department of Biotechnology and Food Science, Trondheim, Norway.
Curr Res Food Sci. 2023 May 13;6:100515. doi: 10.1016/j.crfs.2023.100515. eCollection 2023.
This study sought to explore the combined use of confocal Raman microscopy and microfluidic channels to probe the location and mobility of hydrophobic antioxidant (β-carotene) incorporated at the interface of food-grade droplet-stabilized emulsions (DSEs). Microfluidic channels were used to isolate emulsion droplets for efficient investigation of antioxidant mobility. This approach proved more conclusive than fixing the sample in agarose, because a single layer of droplets could be obtained. Results also indicated that the migration of β-carotene incorporated in shell droplets of olive oil and trimyristin DSEs to core droplets was minimal and beta-carotene remained mostly localised at the interface even after 3 days of production. This work demonstrates that microfluidic isolation of emulsion droplets combined with confocal Raman microscopy can give new insights into the spatial variation of chemical composition within emulsions. This study revealed that the migration of β-carotene between shell and core was minimal and hence it may be possible to concurrently deliver two incompatible compounds by spatially segregating them between shell and core compartments of DSEs.
本研究旨在探索共聚焦拉曼显微镜与微流控通道的联合应用,以探测掺入食品级液滴稳定乳液(DSEs)界面的疏水抗氧化剂(β-胡萝卜素)的位置和流动性。微流控通道用于分离乳液滴,以便高效研究抗氧化剂的流动性。这种方法比将样品固定在琼脂糖中更具说服力,因为可以获得单层液滴。结果还表明,掺入橄榄油和三肉豆蔻酸甘油酯DSEs壳层液滴中的β-胡萝卜素向核心液滴的迁移极少,即使在生产3天后,β-胡萝卜素仍主要定位于界面处。这项工作表明,乳液滴的微流控分离与共聚焦拉曼显微镜相结合,可以为乳液中化学成分的空间变化提供新的见解。该研究表明,β-胡萝卜素在壳层和核心之间的迁移极少,因此通过在DSEs的壳层和核心隔室之间对两种不相容的化合物进行空间分离,有可能同时递送它们。