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脂肪晶体:一种在 W/O/W 双乳液中抑制分子传输的工具。

Fat crystals: A tool to inhibit molecular transport in W/O/W double emulsions.

机构信息

Particle and Interfacial Technology Group, Faculty of Bioscience Engineering, Ghent University, Ghent, Belgium.

Laboratory of Food Technology and Engineering, Faculty of Bioscience Engineering, Ghent University, Ghent, Belgium.

出版信息

Magn Reson Chem. 2019 Sep;57(9):707-718. doi: 10.1002/mrc.4840. Epub 2019 Feb 11.

Abstract

Water-in-oil-in-water (W/O/W) double emulsions are a promising technology for encapsulation applications of water soluble compounds with respect to functional food systems. Yet molecular transport through the oil phase is a well-known problem for liquid oil-based double emulsions. The influence of network crystallization in the oil phase of W/O/W globules was evaluated by NMR and laser light scattering experiments on both a liquid oil-based double emulsion and a solid fat-based double emulsion. Water transport was assessed by low-resolution NMR diffusometry and by an osmotically induced swelling or shrinking experiment, whereas manganese ion permeation was followed by means of T -relaxometry. The solid fat-based W/O/W globules contained a crystal network with about 80% solid fat. This W/O/W emulsion showed a reduced molecular water exchange and a slower manganese ion influx in the considered time frame, whereas its globule size remained stable under the applied osmotic gradients. The reduced permeability of the oil phase is assumed to be caused by the increased tortuosity of the diffusive path imposed by the crystal network. This solid network also provided mechanical strength to the W/O/W globules to counteract the applied osmotic forces.

摘要

水包油包水(W/O/W)双重乳液是一种很有前途的技术,可用于水溶性化合物的包封应用,特别是在功能性食品系统中。然而,对于基于液态油的双重乳液而言,分子通过油相的传递是一个众所周知的问题。通过 NMR 和激光光散射实验,评估了 W/O/W 液滴中油相的网络结晶对其的影响,实验对象分别为基于液态油的双重乳液和基于固态油的双重乳液。通过低分辨率 NMR 扩散测量和渗透压诱导的膨胀或收缩实验评估了水的传递,而锰离子渗透则通过 T1 弛豫测量进行跟踪。基于固态油的 W/O/W 液滴中含有约 80%固体脂肪的晶体网络。在考虑的时间范围内,这种 W/O/W 乳液显示出分子水交换减少和锰离子流入速度减慢,而其液滴大小在施加的渗透压梯度下保持稳定。油相的渗透率降低被认为是由晶体网络造成的扩散路径曲折度增加引起的。这种固态网络还为 W/O/W 液滴提供了机械强度,以抵抗施加的渗透压。

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