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Iota-Carrageenan and Starch Matrices as the Suitable Delivery Systems of Curcumin and Resveratrol

机译:iota-角叉菜胶和淀粉基质是姜黄素和白藜芦醇的合适递送系统

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摘要

With the development of the industry and economy, healthy foods such as functional foods and nutraceuticals are highly demanded, especially by the people with chronic diseases and children. Polyphenols such as curcumin and resveratrol are proven to be effective for the prevention and treatment of chronic disease, such as diabetes, cardiovascular disease, obesity and cancer. However, their unstable properties and water insolubility curtail their application in developing food supplements, functional foods and medicinal foods. Highly efficient and economical delivery systems are helpful to overcome this quandary. Among the several available carrier materials, polysaccharide based delivery materials stand out tall due to their lack of toxicity, cost-effectiveness and compatibility to humans. Herein, two categories of polysaccharides, namely dietary fiber and starch, were investigated.;Iota-carrageenan (IC) has been chosen as the model fiber, because it forms thermos-reversible gels and oriented fibers with ordered networks. Curcumin and resveratrol were encapsulated in IC fibers for different time periods. The results demonstrate that encapsulation time indeed dictates the overall entrapped amount with an optimal time of 3 weeks. The two polyphenols are heat protected and released in a sustained manner from the IC network. The outcome offers an elegant opportunity for developing value-added delivery systems of polyphenols, in particular, and health promoting and disease preventing compounds, in general, based on ordered hydrocolloid networks.;Natural starch granules contain crystalline networks and could serve as ideal wall materials to protect polyphenols. The water channels present in B-type starch networks, e.g. potato starch, are suited well for this purpose. Towards this end, potato, cassava, high amylose maize and waxy maize starches were selected to encapsulate the curcumin and resveratrol. In vitro starch digestion analyses reveal highly encouraging results from the potato and high amylose maize starch complexes because of their reduced starch digestibility. The outcome seems to lay a strong foundation for design and development of novel food supplements, functional foods and medicinal foods.;Overall, the current study provides a novel encapsulation material for polyphenols and offers some optimal conditions for sample preparation, which will indeed have the potential to develop a cost-effective and human compatible carrier system.
机译:随着工业和经济的发展,对功能性食品和保健食品等健康食品的需求特别高,特别是对于患有慢性疾病的人和儿童。姜黄素和白藜芦醇等多酚被证明可有效预防和治疗糖尿病,心血管疾病,肥胖症和癌症等慢性疾病。但是,它们的不稳定特性和水不溶性限制了它们在开发食品补充剂,功能性食品和药用食品中的应用。高效,经济的配送系统有助于克服这一难题。在几种可用的载体材料中,基于多糖的递送材料因其缺乏毒性,成本效益和与人的相容性而突出。在本文中,研究了两类多糖,即膳食纤维和淀粉。;碘-角叉菜胶(IC)被选作模型纤维,因为它形成热可逆性凝胶和具有规则网络的定向纤维。姜黄素和白藜芦醇被包裹在IC纤维中不同的时间段。结果表明,包封时间确实决定了总包埋量,最佳时间为3周。两种多酚经过热保护,并以持续的方式从IC网络释放。该成果为开发多酚(尤其是增值传递系统)和一般地基于有序水胶体网络的健康促进和疾病预防化合物提供了绝好的机会。;天然淀粉颗粒含有结晶网络,可以用作理想的墙体材料保护多酚。 B型淀粉网络中的水通道,例如马铃薯淀粉非常适合此目的。为此,选择马铃薯,木薯,高直链玉米和蜡质玉米淀粉来包裹姜黄素和白藜芦醇。体外淀粉消化分析显示,由于马铃薯和高直链玉米淀粉复合物的淀粉消化率降低,因此获得了令人鼓舞的结果。该结果似乎为新型食品补充剂,功能性食品和药用食品的设计和开发奠定了坚实的基础。总体而言,当前的研究提供了一种新型的多酚包封材料,并为样品制备提供了一些最佳条件,这些条件确实具有具有开发成本效益高且与人类兼容的载体系统的潜力。

著录项

  • 作者

    Yao, Tianming.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Food science.
  • 学位 M.S.
  • 年度 2017
  • 页码 89 p.
  • 总页数 89
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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