Nanoparticle delivery systems of functional substances for precision nutrition.

Q1 Agricultural and Biological Sciences
Advances in Food and Nutrition Research Pub Date : 2024-01-01 Epub Date: 2024-07-05 DOI:10.1016/bs.afnr.2024.05.008
Ziyi Zhang, Ruxin Chang, Qing Yue, Bin Liu, Zekun Li, Yu Yuan, Shuang Liang, Yuan Li
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引用次数: 0

Abstract

Foodborne functional substances have received much attention for their functional benefits in health and disease. However, these substances are easily affected by the adverse environment during production, transportation, or storage. They will also be damaged by the gastric environment and limited by the mucosal barrier after entering the human body, thus affecting the bioavailability of functional substances in the body. The construction of nanoparticle delivery systems is helpful to protect the biological activity of functional substances and improve their solubility, stability, and absorption of substances. Responsive delivery systems help control the release of functional substances in specific environments and targeted sites to achieve nutritional intervention, disease prevention, and treatment. In this chapter, the main types of foodborne functional substances and their commonly used delivery systems were reviewed, and the application of delivery systems in precision nutrition was described from the aspects of environmental stimuli-responsive delivery systems, site-specific delivery systems, and disease-targeted delivery systems.

用于精准营养的功能物质纳米颗粒输送系统。
食源性功能物质因其对健康和疾病的功能性益处而备受关注。然而,这些物质在生产、运输或储存过程中很容易受到不利环境的影响。它们进入人体后还会受到胃环境的破坏和粘膜屏障的限制,从而影响功能物质在体内的生物利用率。构建纳米颗粒给药系统有助于保护功能物质的生物活性,提高其溶解性、稳定性和物质吸收率。响应式递送系统有助于控制功能物质在特定环境和目标部位的释放,从而实现营养干预、疾病预防和治疗。本章综述了食源性功能物质的主要类型及其常用给药系统,并从环境刺激响应给药系统、特定部位给药系统和疾病靶向给药系统三个方面阐述了给药系统在精准营养中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Advances in Food and Nutrition Research
Advances in Food and Nutrition Research Agricultural and Biological Sciences-Food Science
CiteScore
8.50
自引率
0.00%
发文量
50
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