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首页> 外文期刊>Journal of Functional Foods >Encapsulation of bioactive salmon protein hydrolysates with chitosan-coated liposomes
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Encapsulation of bioactive salmon protein hydrolysates with chitosan-coated liposomes

机译:壳聚糖包衣脂质体包裹生物活性鲑鱼蛋白水解物

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摘要

A nano-encapsulation strategy for a chitosan-coated liposomal oral delivery system using milk fat globule membrane (MFGM) phospholipids for the entrapment of antidiabetic peptides prepared from Atlantic salmon (Salmo salar) protein hydrolysates (SPH) was developed. The size, zeta potential, entrapment efficiency, stability during freeze-drying freeze thawing, and long-term storage abilities of the nano-capsules were investigated as a function of concentrations of phospholipid and chitosan coating material. Chitosan coating greatly improved the stability of liposomes. The maximum encapsulation efficiency (71.3%) and physical stability were achieved with 10% MFGM phospholipid and 0.4% chitosan. Chitosan coating significantly prolonged the release of SPH in simulated biological fluids. In conclusion, liposomes with "optimal" chitosan coating-concentration show great promise as a potential new delivery system for protein hydrolysates. (C) 2015 Elsevier Ltd. All rights reserved.
机译:壳聚糖包衣的脂质体口服递送系统的纳米包封策略使用乳脂球膜(MFGM)磷脂来捕获由大西洋鲑鱼(Salmo salar)蛋白水解物(SPH)制备的抗糖尿病肽的包封。研究了纳米胶囊的大小,ζ电势,截留效率,冻干稳定性,冻融稳定性以及纳米胶囊的长期储存能力与磷脂和壳聚糖涂层材料浓度的关系。壳聚糖涂层极大地改善了脂质体的稳定性。使用10%MFGM磷脂和0.4%壳聚糖可获得最大的包封效率(71.3%)和物理稳定性。壳聚糖涂层可显着延长模拟生物液中SPH的释放。总之,壳聚糖包衣浓度达到“最佳”的脂质体具有广阔的前景,可作为潜在的新型蛋白水解产物递送系统。 (C)2015 Elsevier Ltd.保留所有权利。

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