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喷雾干燥法用不同聚合度果聚糖微胶囊包埋杨桃汁。

Microencapsulation of Eugenia uniflora L. juice by spray drying using fructans with different degrees of polymerisation.

机构信息

Instituto Tecnológico de Tepic. Av. Tecnológico #2595, Col. Lagos del Country, C. P. 63175, Tepic, Nayarit, Mexico.

Instituto de Ciencias Básicas, Universidad Veracruzana, Dr. Luis Castelazo s/n, Col. Industrial Animas, Xalapa Ver., C.P. 91000, Mexico.

出版信息

Carbohydr Polym. 2017 Nov 1;175:603-609. doi: 10.1016/j.carbpol.2017.08.030. Epub 2017 Aug 12.

Abstract

The objective of this work was to microencapsulate pitanga (Eugenia uniflora L.) juice by spray drying, using High Performance Agave Fructans (HPAF) and High Degree of Polymerisation Agave Fructans (HDPAF) and maltodextrin (MD), respectively, as the wall materials. The physicochemical and antioxidant properties of the capsules during storage at various temperatures were evaluated. The microparticles developed using fructans HPAF and HDPAF, exhibited similar physicochemical and flow properties to those presented by the microparticles prepared with MD. The highest yield and concentration of anthocyanins after drying and during storage were found for a 1:6 core:wall material ratio. The total color change was a good indicator of the microcapsule stability. This study showed that both fructans fraction possess similar encapsulating properties to MD and that the HDPAF were more efficacious than MD at protecting the antioxidants during drying and storage.

摘要

本工作的目的是通过喷雾干燥微胶囊化芭拉圭果(Eugenia uniflora L.)汁,分别使用高性能龙舌兰果糖(HPAF)和高聚合度龙舌兰果糖(HDPAF)以及麦芽糊精(MD)作为壁材。评估了在不同温度下储存期间胶囊的物理化学和抗氧化性质。使用 HPAF 和 HDPAF 果糖开发的微颗粒在物理化学和流动性能方面与使用 MD 制备的微颗粒相似。在干燥和储存过程中,发现 1:6 芯/壁材料比的花青素得率和浓度最高。总色差值是微胶囊稳定性的良好指标。本研究表明,两种果糖级分都具有与 MD 相似的包封特性,并且在干燥和储存过程中,HDPAF 比 MD 更有效地保护抗氧化剂。

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