Nanostructured steady-state nanocarriers for nutrients preservation and delivery.

Q1 Agricultural and Biological Sciences
Advances in Food and Nutrition Research Pub Date : 2023-01-01 Epub Date: 2023-03-21 DOI:10.1016/bs.afnr.2023.02.001
Mingqian Tan, Xuedi Zhang, Shan Sun, Guoxin Cui
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引用次数: 0

Abstract

Food bioactives possess specific physiological benefits of preventing certain diet-related chronic diseases or maintain human health. However, the limitations of the bioactives are their poor stability, lower water solubility and unacceptable bioaccessibility. Structure damage or degradation is often found for the bioactives under certain environmental conditions like high temperature, strong light, extreme pH or high oxygen concentration during food processing, packaging, storage and absorption. Nanostructured steady-state nanocarriers have shown great potential in overcoming the drawbacks for food bioactives. Various delivery systems including solid form delivery system, liquid form delivery system and encapsulation technology have been developed. The embedded food nutrients can largely decrease the loss and degradation during food processing, packaging and storage. The design and application of stimulus and targeted delivery systems can improve the stability, bioavailability and efficacy of the food bioactives upon oral consumption due to enzymatic degradation in the gastrointestinal tract. The food nutrients encapsulated in the smart delivery system can be well protected against degradation during oral administration, thus improving the bioavailability and releazing controlled or targeted release for food nutrients. The encapsulated food bioactives show great potential in nutrition therapy for sub-health status and disease. Much effort is required to design and prepare more biocompatible nanostructured steady-state nanocarriers using food-grade protein or polysaccharides as wall materials, which can be used in food industry and maintain the human health.

用于营养物质保存和输送的纳米结构稳态纳米载体。
食品生物活性物质具有预防某些与饮食相关的慢性疾病或维持人类健康的特定生理益处。然而,生物活性物质的局限性在于其稳定性差、水溶性低和不可接受的生物可及性。在食品加工、包装、储存和吸收过程中,在高温、强光、极端pH或高氧浓度等特定环境条件下,生物活性物质往往会出现结构损伤或降解。纳米结构的稳态纳米载体在克服食品生物活性物质的缺点方面显示出巨大的潜力。已经开发了包括固体形式递送系统、液体形式递送系统和封装技术在内的各种递送系统。嵌入式食品营养素可以在很大程度上减少食品加工、包装和储存过程中的损失和降解。由于胃肠道中的酶降解,刺激和靶向递送系统的设计和应用可以提高食品生物活性物质在口服时的稳定性、生物利用度和功效。封装在智能递送系统中的食物营养素在口服给药过程中可以很好地防止降解,从而提高生物利用度,并重新控制或靶向释放食物营养素。胶囊化食品生物活性物质在亚健康状态和疾病的营养治疗中显示出巨大的潜力。以食品级蛋白质或多糖为壁材,设计和制备更具生物相容性的纳米结构稳态纳米载体,可用于食品工业和维护人类健康,需要付出大量努力。
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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