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可可(Theobroma cacao L.)废弃物提取物的微胶囊化:采用响应面法进行优化

Microencapsulation of Theobroma cacao L. waste extract: optimization using response surface methodology.

作者信息

Gabbay Alves Taís Vanessa, Silva da Costa Russany, Aliakbarian Bahar, Casazza Alessandro Alberto, Perego Patrizia, Carréra Silva Júnior José Otávio, Ribeiro Costa Roseane Maria, Converti Attilio

机构信息

a Laboratory of Nanotecnology Pharmaceutical , Federal University of Pará , Belém , PA , Brazil.

b Laboratory R&D Pharmaceutical and Cosmetic , Federal University of Pará , Belém , PA , Brazil.

出版信息

J Microencapsul. 2017 Mar;34(2):111-120. doi: 10.1080/02652048.2017.1296499. Epub 2017 Mar 13.

Abstract

The cocoa extract (Theobroma cacao L.) has a significant amount of polyphenols (TP) with potent antioxidant activity (AA). This study aims to optimise microencapsulation of the extract of cocoa waste using chitosan and maltodextrin. Microencapsulation tests were performed according to a Box-Behnken factorial design, and the results were evaluated by response surface methodology with temperature, maltodextrin concentration (MD) and extract flowrate (EF) as independent variables, and the fraction of encapsulated TP, TP encapsulation yield, AA, yield of drying and solubility index as responses. The optimum conditions were: inlet temperature of 170 °C, MD of 5% and EF of 2.5 mL/min. HPLC analysis identified epicatechin as the major component of both the extract and microparticles. TP release was faster at pH 3.5 than in water. These results as a whole suggest that microencapsulation was successful and the final product can be used as a nutrient source for aquatic animal feed. Highlights Microencapsulation is optimised according to a factorial design of the Box-Behnken type. Epicatechin is the major component of both the extract and microcapsules. The release of polyphenols from microcapsules is faster at pH 3.5 than in water.

摘要

可可提取物(Theobroma cacao L.)含有大量具有强大抗氧化活性(AA)的多酚(TP)。本研究旨在优化使用壳聚糖和麦芽糊精对可可废料提取物进行微囊化的工艺。微囊化试验根据Box-Behnken析因设计进行,结果采用响应面法进行评估,以温度、麦芽糊精浓度(MD)和提取物流速(EF)作为自变量,以包封TP的分数、TP包封产率、AA、干燥产率和溶解度指数作为响应指标。最佳条件为:入口温度170°C、MD为5%、EF为2.5 mL/min。高效液相色谱分析确定表儿茶素是提取物和微粒的主要成分。TP在pH 3.5时的释放速度比在水中更快。总体而言,这些结果表明微囊化是成功的,最终产品可作为水产动物饲料的营养源。要点:根据Box-Behnken类型的析因设计对微囊化进行了优化。表儿茶素是提取物和微胶囊的主要成分。微胶囊中多酚在pH 3.5时的释放速度比在水中更快。

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