Rovoli Magdalini, Gortzi Olga, Lalas Stavros, Kontopidis George
Biochemistry Laboratory, Veterinary Department, University of Thessaly , Karditsa , Greece and.
J Liposome Res. 2014 Mar;24(1):74-81. doi: 10.3109/08982104.2013.839701. Epub 2013 Oct 7.
Vitamin E (VE) or α-tocopherol is the major fat-soluble antioxidant in the human body. It is a sensitive, easily oxidized in the air, molecule, so it must be protected from pro-oxidant elements which could affect its physiological benefits. Encapsulation constitutes a promising approach to maintain VE native properties over time and increase its concentration in aqueous media. Liposomes have been studied as sustained delivery systems, being biodegradable, non-toxic and non-immunogenic. A new liposome/β-lactoglobulin (β-Lg) formulation has been developed and characterized as a possible stable delivery system for VE. β-Lg has been selected due to its property to bind a variety of hydrophobic molecules. The aim of this study was the preparation of β-Lg-liposome formulation and the determination of VE encapsulation efficiency, in order to develop a new more efficient carrier for VE in aqueous media.
维生素E(VE)或α-生育酚是人体主要的脂溶性抗氧化剂。它是一种敏感的分子,在空气中容易被氧化,因此必须防止其受到可能影响其生理益处的促氧化剂的影响。包封是一种很有前景的方法,可以长期保持VE的天然特性,并提高其在水性介质中的浓度。脂质体作为一种持续递送系统已被研究,具有可生物降解、无毒和无免疫原性的特点。一种新的脂质体/β-乳球蛋白(β-Lg)制剂已被开发并表征为一种可能稳定的VE递送系统。选择β-Lg是因为它具有结合多种疏水分子的特性。本研究的目的是制备β-Lg-脂质体制剂并测定VE的包封效率,以便开发一种在水性介质中更有效的VE载体。