School of Ying-Dong Food Sciences and Engineering , Shaoguan University , Shaoguan 512005 , PR China.
J Agric Food Chem. 2018 Oct 24;66(42):11113-11123. doi: 10.1021/acs.jafc.8b03714. Epub 2018 Oct 15.
Diets containing partially hydrogenated oils (PHOs) expose the human body to trans fatty acids, thus endangering cardiovascular health. Pickering high internal phase emulsions (HIPEs) is a promising alternative of PHOs. This work attempted to construct stable Pickering HIPEs by engineering interface architecture through manipulating the interfacial, self-assembly, and packing behavior of zein particles using the interaction between protein and pectin. Partially wettable zein/pectin hybrid particles (ZPHPs) with three-phase contact angles ranging from 84° to 87° were developed successfully. ZPHPs were irreversibly anchored at the oil-water interface, resulting in robust and ordered interfacial structure, evidenced by the combination of LB-SEM and CLSM. This situation helped to hold a percolating 3D oil droplet network, which facilitated the formation of Pickering HIPEs with viscoelasticity, excellent thixotropy (>91.0%), and storage stability. Curcumin in HIPEs was well protected from UV-induced degradation and endowed HIPEs with ideal oxidant stability. Fabricated Pickering HIPEs possess a charming application prospect in foods and the pharmaceutical industry.
含有部分氢化油(PHOs)的饮食会使人体接触反式脂肪酸,从而危害心血管健康。Pickering 高内相乳液(HIPE)是 PHOs 的一种有前途的替代品。本工作试图通过操纵界面的界面、自组装和填充行为,利用蛋白质和果胶之间的相互作用,通过工程界面结构来构建稳定的 Pickering HIPE。成功开发了具有 84°至 87°三相接触角的部分可润湿的玉米醇溶蛋白/果胶杂化颗粒(ZPHPs)。ZPHPs 不可逆地固定在油水界面上,形成了坚固且有序的界面结构,这一点通过 LB-SEM 和 CLSM 的结合得到了证明。这种情况有助于形成具有粘弹性、优异触变性(>91.0%)和储存稳定性的可渗透 3D 油滴网络。HIPE 中的姜黄素很好地保护免受紫外线诱导的降解,并赋予 HIPE 理想的抗氧化稳定性。制备的 Pickering HIPE 在食品和制药行业具有迷人的应用前景。