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油体作为虾青素稳定化和安全递送的潜在微胶囊载体。

Oil bodies as a potential microencapsulation carrier for astaxanthin stabilisation and safe delivery.

作者信息

Acevedo Francisca, Rubilar Mónica, Jofré Ignacio, Villarroel Mario, Navarrete Patricia, Esparza Magdalena, Romero Fernando, Vilches Elías Alberto, Acevedo Valentina, Shene Carolina

机构信息

Agriaquaculture Nutritional Genomic Center, CGNA, Technology and Processes Unit , Temuco , Chile .

出版信息

J Microencapsul. 2014;31(5):488-500. doi: 10.3109/02652048.2013.879931. Epub 2014 Apr 3.

Abstract

Astaxanthin (AST) is a valued molecule because of its high antioxidant properties. However, AST is extremely sensitive to oxidation, causing the loss of its bioactive properties. The purposes of this study were to define conditions for microencapsulating AST in oil bodies (OB) from Brassica napus to enhance its oxidative stability, and to test the bioactivity of the microencapsulated AST (AST-M) in cells. Conditions for maximising microencapsulation efficiency (ME) were determined using the Response Surface Methodology, obtaining a high ME (>99%). OB loaded with AST showed a strong electrostatic repulsion in a wide range of pH and ionic strengths. It was found that AST-M exposed to air and light was more stable than free AST. In addition, the protective effect of AST against intracellular ROS production was positively influenced by microencapsulation in OB. These results suggest that OB offer a novel option for stabilising and delivering AST.

摘要

虾青素(AST)因其高抗氧化特性而成为一种有价值的分子。然而,AST对氧化极为敏感,会导致其生物活性丧失。本研究的目的是确定将AST微囊化于甘蓝型油菜油体(OB)中的条件,以提高其氧化稳定性,并测试微囊化AST(AST-M)在细胞中的生物活性。使用响应面法确定了使微囊化效率(ME)最大化的条件,获得了较高的ME(>99%)。负载AST的OB在广泛的pH值和离子强度范围内表现出强烈的静电排斥。研究发现,暴露于空气和光线下的AST-M比游离AST更稳定。此外,在OB中进行微囊化对AST保护细胞内ROS生成的作用有积极影响。这些结果表明,OB为稳定和递送AST提供了一种新的选择。

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