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具有不同形貌、硬度和尺寸的 α-乳白蛋白自组装纳米颗粒作为 Pickering 稳定剂用于制备油包水乳状液和递送姜黄素。

α-Lactalbumin Self-Assembled Nanoparticles with Various Morphologies, Stiffnesses, and Sizes as Pickering Stabilizers for Oil-in-Water Emulsions and Delivery of Curcumin.

机构信息

Key Laboratory of Precision Nutrition and Food Quality, Key Laboratory of Functional Dairy, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, China.

出版信息

J Agric Food Chem. 2021 Mar 3;69(8):2485-2492. doi: 10.1021/acs.jafc.0c06263. Epub 2021 Feb 8.

Abstract

To systematically study the multiple effects of nanoparticles (NPs) on the stability, interfacial activity, and digestive properties of Pickering emulsions (PEs), various oil-in-water PEs were prepared by NPs based on the self-assembled α-lactalbumin-derived peptides with a variety of morphologies, stiffnesses, and sizes. We discovered that PEs stabilized by small-sized and soft nanospheres (NSs) exhibited the highest stability compared with other nanoparticles observed by Turbiscan during storage. Dilational interfacial rheological analysis demonstrated that a highly elastic interfacial film of the NSs had been formed by orderly packing at oil/water interfaces. Meanwhile, the most stable Pickering emulsion stabilized by NSs possessed the lowest lipid digestion rate. The tubular NPs distributed unevenly at the oil-water interfaces therefore showed lower interfacial activity. Harder NPs with lower flexibility showed a lower emulsion stability. Curcumin was loaded in PEs to further study the effect of bioavailability. Moreover, pharmacokinetic results revealed that Pickering emulsion stabilized by NSs showed the highest curcumin bioavailability, which was 5.37 times higher than unencapsulated curcumin. This study suggested that Pickering emulsion stabilized by NSs with the optimum stability was the most promising delivery system for hydrophobic bioactive ingredients.

摘要

为了系统地研究纳米颗粒(NPs)对 Pickering 乳液(PEs)稳定性、界面活性和消化特性的多种影响,我们基于具有多种形态、刚度和尺寸的自组装α-乳白蛋白衍生肽,制备了各种油包水 PEs。我们发现,与在储存过程中通过 Turbiscan 观察到的其他纳米颗粒相比,由小尺寸软纳米球(NSs)稳定的 PEs 表现出最高的稳定性。膨胀界面流变分析表明,NSs 在油水界面上有序排列形成了高度弹性的界面膜。同时,由 NSs 稳定的最稳定的 Pickering 乳液具有最低的脂质消化率。因此,在油水界面上分布不均匀的管状 NPs 表现出较低的界面活性。较硬的 NPs 柔韧性较低,乳液稳定性较低。姜黄素被装载在 PEs 中以进一步研究生物利用度的影响。此外,药代动力学结果表明,由 NSs 稳定的 Pickering 乳液具有最高的姜黄素生物利用度,比未包裹的姜黄素高 5.37 倍。本研究表明,具有最佳稳定性的 NSs 稳定的 Pickering 乳液是疏水性生物活性成分最有前途的递送系统。

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