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采用高压匀质法将大豆磷脂制备的脂质体包封植物甾醇和植物甾醇酯。

Encapsulation of phytosterols and phytosterol esters in liposomes made with soy phospholipids by high pressure homogenization.

机构信息

Department of Food Science, University of Guelph, 50 Stone Road East, Guelph, ON, Canada N1G2 W1.

出版信息

Food Funct. 2017 Nov 15;8(11):3964-3969. doi: 10.1039/c7fo00905d.

Abstract

Phytosterols and phytosterol esters were encapsulated within large unilamellar liposomes prepared with soy phospholipids using a microfluidizer. The average particle diameter of these liposomal vesicles increased with increasing amounts of encapsulated phytosterols, especially with increasing free sterol content. The phytosterol content, liposomal particle size, and phytosterol encapsulation efficiency started to plateau when liposomes were prepared with MOPS buffer dispersions that contained 50 mg ml soy phospholipid and more than 4% phytosterol blend, suggesting the saturation of phytosterol encapsulation. We proposed an encapsulation mechanism of free sterols and phytosterol esters in liposomes, where free sterols were mainly encapsulated within the lumen of these liposomes as crystals, and sterol esters and some free sterols were incorporated within the phospholipid bilayer of the liposomal membrane. The results from this work could provide the pharmaceutical and nutraceutical industries a practical method to produce loaded liposomes using inexpensive phospholipid mixtures for the delivery of bioactive ingredients.

摘要

植物固醇和植物固醇酯被包裹在使用微流仪用大豆磷脂制备的大单室脂质体中。这些脂质体囊泡的平均粒径随包裹的植物固醇量的增加而增加,尤其是随游离固醇含量的增加而增加。当用 MOPS 缓冲液分散体制备脂质体时,脂质体中包含 50mg/ml 的大豆磷脂和超过 4%的植物固醇混合物,植物固醇的含量、脂质体粒径和植物固醇包封效率开始达到平台期,表明植物固醇包封达到饱和。我们提出了自由甾醇和植物固醇酯在脂质体中的包封机制,其中自由甾醇主要作为晶体包裹在这些脂质体的腔室内,甾醇酯和一些自由甾醇被包含在脂质体膜的磷脂双层内。这项工作的结果可为制药和营养保健品行业提供一种实用的方法,使用廉价的磷脂混合物生产负载脂质体,用于输送生物活性成分。

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