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Barley Protein based Microcapsules for Nutraceutical Delivery.

机译:用于营养递送的基于大麦蛋白的微胶囊。

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摘要

Barley protein based microcapsules (1-5μm) incorporating fish oil/β-carotene were successfully prepared. Well suspended solid microcapsules, rather than emulsions, were able to form after high pressure emulsifying process. These wet-status microcapsules could be turned into dry powder by a spray drying process. The microcapsules demonstrated spherical shape and high loading capacity. Oxidative stability tests under accelerated conditions and in food formulations suggest barley proteins are effective microencapsulation materials to protect fish oil against oxidation. Microcapsule degradation and bioactive compound release behaviors were studied in the simulated gastro-intestinal tract. The data revealed that nano-encapsulations (20-30nm) were formed as a result of enzymatic degradation of microcapsule bulk matrix in the simulated gastric tract. These nano-encapsulations delivered β-carotene to a simulated human intestinal tract intact, where they were degraded by pancreatic enzymes and steadily released the β-carotene. These uniquely structured microcapsules may provide a new strategy to develop target delivery systems for nutraceuticals.;Keywords: barley protein; microencapsulation; β-carotene; fish oil; oxidative stability; controlled release.
机译:成功制备了掺入鱼油/β-胡萝卜素的大麦蛋白基微胶囊(1-5μm)。高压乳化过程后,可以形成悬浮良好的固体微囊而不是乳液。这些湿态微胶囊可以通过喷雾干燥过程变成干粉。微胶囊表现出球形和高负载能力。在加速条件下和食品配方中的氧化稳定性测试表明,大麦蛋白是有效的微囊化材料,可保护鱼油免受氧化。在模拟的胃肠道中研究了微胶囊的降解和生物活性化合物的释放行为。数据显示,由于微囊体基质在模拟胃道中的酶降解,形成了纳米囊(20-30nm)。这些纳米胶囊将β-胡萝卜素递送至完整的模拟人体肠道,在那里它们被胰酶降解并稳定释放β-胡萝卜素。这些独特结构的微胶囊可能为开发保健食品目标递送系统提供新策略。微囊化β-胡萝卜素;鱼油;氧化稳定性控释。

著录项

  • 作者

    Wang, Ruoxi.;

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Health Sciences Nutrition.
  • 学位 M.Sc.
  • 年度 2010
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 老年病学;
  • 关键词

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