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辛烯基琥珀酸酯化植物糖原的体外消化率和乳化性质。

In vitro digestibility and emulsification properties of phytoglycogen octenyl succinate.

机构信息

Department of Food Science, Purdue University, Food Science Building, West Lafayette, Indiana 47907-1160, USA.

出版信息

J Agric Food Chem. 2010 Apr 28;58(8):5140-6. doi: 10.1021/jf904378e.

Abstract

This paper reports our recent studies on the in vitro digestibility and emulsification properties of an amphiphilic carbohydrate nanoparticle, phytoglycogen octenyl succinate (PG-OS). Phytoglycogen (PG), a glycogen-like alpha-d-glucan isolated from sugary-1 sweet corn endosperms, was subjected to octenyl succinate substitution to prepare PG-OS. Waxy corn starch octenyl succinate (WCS-OS) was also prepared as the reference. The degree of substitution (DS), molecular weight, particle size, dispersed molecular density, and zeta-potential of PG-OS and WCS-OS were determined. Transmission electron microscope (TEM) was used to image PG and its derivatives. In vitro digestibility and emulsification properties of PG-OS and WCS-OS were compared. The results showed that the dispersed molecular density of PG and PG-OS was much greater than that of WCS and WCS-OS. Zeta-potential of PG-OS decreased as the pH of dispersion increased. In general, the digestibility of PG and PG-OS was lower than that of WCS and WCS-OS at equivalent DS, suggesting the effect of glucan structure on glucan digestibility. At equivalent DS, PG-OS showed similar or even greater capability than WCS-OS to physically stabilize fish oil emulsions. This work revealed the potential of amphiphilic carbohydrate nanoparticles in the applications of emulsions.

摘要

本文报告了我们最近关于一种两亲性碳水化合物纳米颗粒——辛烯基琥珀酸酯化植物糖原(PG-OS)的体外消化率和乳化性能的研究。植物糖原(PG)是一种从甜玉米胚乳中分离出来的类似于糖原的α-D-葡聚糖,它被辛烯基琥珀酸取代以制备 PG-OS。蜡质玉米淀粉辛烯基琥珀酸酯(WCS-OS)也被制备为参比物。测定了 PG-OS 和 WCS-OS 的取代度(DS)、分子量、粒径、分散分子密度和zeta 电位。透射电子显微镜(TEM)用于观察 PG 及其衍生物的形态。比较了 PG-OS 和 WCS-OS 的体外消化率和乳化性能。结果表明,PG 和 PG-OS 的分散分子密度远大于 WCS 和 WCS-OS。PG-OS 的 zeta 电位随分散体 pH 的升高而降低。一般来说,在等效 DS 下,PG 和 PG-OS 的消化率低于 WCS 和 WCS-OS,表明葡聚糖结构对葡聚糖消化率有影响。在等效 DS 下,PG-OS 表现出与 WCS-OS 相似甚至更强的能力,能够物理稳定鱼油乳液。这项工作揭示了两亲性碳水化合物纳米颗粒在乳液应用中的潜力。

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