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酚类负载的微/纳米递药系统在食品中的最新应用进展。

Recent advances in food applications of phenolic-loaded micro/nanodelivery systems.

机构信息

Technical University of Munich Campus Straubing for Biotechnology and Sustainability, Straubing, Germany.

German Institute of Food Technologies (DIL e.V.), Quakenbrück, Germany.

出版信息

Crit Rev Food Sci Nutr. 2023;63(27):8939-8959. doi: 10.1080/10408398.2022.2056870. Epub 2022 Apr 15.

Abstract

The current relevance of a healthy diet in well-being has led to a surging interest in designing novel functional food products enriched by biologically active molecules. As nature-inspired bioactive components, several lines of research have revealed the capability of polyphenolic compounds (phenolics) in the medical intervention of different ailments, i.e., tumors, cardiovascular and inflammatory diseases. Phenolics typically possess antioxidant and antibacterial properties and, due to their unique molecular structure, can offer superior platforms for designing functional products. They can protect food ingredients from oxidation and promote the physicochemical attributes of proteins and carbohydrate-based materials. Even though these properties contribute to the inherent benefits of bioactive phenolics as important functional ingredients in the food industry, the in vitro/in vivo instability, poor solubility, and low bioavailability are the main factors restricting their food/pharma applicability. Recent advances in the encapsulation realm are now offering efficient platforms to overcome these limitations. The application of encapsulation field may offer protection and controlled delivery of phenolics in food formulations. Here, we review recent advances in micro/nanoencapsulation of phenolics and highlight efficient carriers from this decade, which have been utilized successfully in food applications. Although further development of phenolic-containing formulations promises to design novel functional food formulations, and revolutionize the food industry, most of the strategies found in the scientific literature are not commercially applicable. Moreover, in vivo experiments are extremely crucial to corroborate the efficiency of such products.

摘要

目前,健康饮食对幸福感的重要性日益凸显,这促使人们对设计富含生物活性分子的新型功能性食品产品产生了浓厚的兴趣。作为受自然启发的生物活性成分,多项研究揭示了多酚化合物(类黄酮)在干预多种疾病(如肿瘤、心血管疾病和炎症性疾病)方面的医学应用潜力。类黄酮通常具有抗氧化和抗菌特性,并且由于其独特的分子结构,可以为设计功能性产品提供优越的平台。它们可以保护食品成分免受氧化,并促进蛋白质和基于碳水化合物的材料的物理化学特性。尽管这些特性有助于将生物活性类黄酮作为食品工业中的重要功能性成分固有地发挥其益处,但体外/体内的不稳定性、较差的溶解度和低生物利用度是限制其在食品/制药应用的主要因素。最近在封装领域的进展为克服这些限制提供了有效的平台。封装领域的应用可以为食品配方中的类黄酮提供保护和控制释放。在这里,我们综述了近年来多酚类物质的微/纳米封装的最新进展,并强调了这十年中成功应用于食品领域的有效载体。尽管含有类黄酮的配方的进一步开发有望设计新型功能性食品配方,并彻底改变食品工业,但科学文献中发现的大多数策略都不适用于商业用途。此外,体内实验对于验证此类产品的效率至关重要。

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