...
首页> 外文期刊>Food Chemistry >Protein-polysaccharide complex coated W/O/W emulsion as secondary microcapsule for hydrophilic arbutin and hydrophobic coumaric acid
【24h】

Protein-polysaccharide complex coated W/O/W emulsion as secondary microcapsule for hydrophilic arbutin and hydrophobic coumaric acid

机译:蛋白质-多糖复合物包被的W / O / W乳液,用作亲水性熊果苷和疏水性香豆酸的二级微胶囊

获取原文
获取原文并翻译 | 示例
           

摘要

This study aimed to examine the modification effect of whey protein concentrate (WPC), WPC-gum arabic (WPCGA) or WPC-high methoxyl pectin (WPC-PEC) complex to tailor-modify W/O/W emulsion for secondary microencapsulation of hydrophilic arbutin and hydrophobic coumaric acid. The stability and rheological properties of coated emulsions, encapsulation yield, release and degradation kinetics of arbutin and coumaric acid were investigated. Results revealed that WPC-PEC complex (at the ratio of 1:3) coating W/O/W emulsion exhibited the highest viscosity and stability, with the highest encapsulation yield of 91.08% for arbutin and 80.92% for coumaric acid, respectively. Tighter coating structure of the WPC-PEC complex (1:3) forming a stronger gel network structure was confirmed, accounting for the larger mean particle size of 569.67 nm. Moreover, the WPC-PEC (1:3) coating W/O/W emulsion also showed controlled release of arbutin and coumaric acid in simulated conditions. The k value of degradation kinetics for arbutin (7.99 x 10(-4) at pH = 1.2, 4.19 x 10(-4) at 90 degrees C and 7.52 x 10(-4) at UV-C treatment) and coumaric acid (5.18 x 10(-4) at pH = 1.2, 3.24 x 10(-4) at 90 degrees C and 6.90 x 10(-4) at UV-C treatment) indicated low degradation rate. The present study revealed that the WPC-PEC (1:3) coating W/O/W emulsion could provide a better synergistic effect on higher encapsulation yield and stability of arbutin and coumaric acid.
机译:这项研究旨在检验乳清蛋白浓缩物(WPC),WPC阿拉伯胶(WPCGA)或WPC高甲氧基果胶(WPC-PEC)复合物的改性效果,以定制改性W / O / W乳液,进行亲水性的二次微囊化。熊果苷和疏水香豆酸。研究了包衣乳液的稳定性和流变性能,包封率,熊果苷和香豆酸的释放和降解动力学。结果表明,WPC / PEC复合物(以1:3的比例)涂布的W / O / W乳液表现出最高的粘度和稳定性,其中熊果苷和香豆酸的最高包封率分别为91.08%和80.92%。确认了形成更强凝胶网络结构的WPC-PEC配合物(1:3)的涂层结构更紧密,这说明其平均粒径更大,为569.67 nm。此外,在模拟条件下,WPC-PEC(1:3)涂料W / O / W乳液还显示出熊果素和香豆酸的受控释放。熊果素(pH = 1.2时为7.99 x 10(-4),90摄氏度为4.19 x 10(-4),UV-C处理为7.52 x 10(-4))的降解动力学的k值和香豆酸(在pH = 1.2时为5.18 x 10(-4),在90度时为3.24 x 10(-4),在UV-C处理时为6.90 x 10(-4))表示降解率较低。本研究表明,WPC-PEC(1:3)涂层W / O / W乳液可对更高的封装产量和熊果素和香豆酸的稳定性提供更好的协同作用。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号