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揭示花色苷的多面世界:生物合成途径、天然来源、提取方法、共色淀作用、包埋技术以及未来在食品中的应用。

Unveiling the multifaceted world of anthocyanins: Biosynthesis pathway, natural sources, extraction methods, copigmentation, encapsulation techniques, and future food applications.

机构信息

Harran University, Engineering Faculty, Food Engineering Department, Şanlıurfa, Turkey.

Harran University, Application and Research Center for Science and Technology, Şanlıurfa, Turkey.

出版信息

Food Res Int. 2024 Jul;187:114437. doi: 10.1016/j.foodres.2024.114437. Epub 2024 Apr 28.

Abstract

Numerous datasets regarding anthocyanins have been noted elsewhere. These previous studies emphasized that all processes must be carried out meticulously from the source used to obtain anthocyanins to their inclusion in relevant applications. However, today, full standardization has not yet been achieved for these processes. For this, presenting the latest developments regarding anthocyanins under one roof would be a useful approach to guide the scientific literature. The current review was designed to serve the stated points. In this context, their biosynthesis pathway was elaborated. Superior potential of fruits and certain by-products in obtaining anthocyanins was revealed compared to their other counterparts. Health-promoting benefits of anthocyanins were detailed. Also, the situation of innovative techniques (ultrasound-assisted extraction, subcritical water extraction, pulse electrical field extraction, and so on) in the anthocyanin extraction was explained. The stability issues, which is one of the most important problems limiting the use of anthocyanins in applications were discussed. The role of copigmentation and various encapsulation techniques in solving these stability problems was summarized. This critical review is a map that provides detailed information about the processes from obtaining anthocyanins, which stand out with their functional properties, to their incorporation into various systems.

摘要

关于花色苷的大量数据集已在其他地方记录。这些先前的研究强调,必须从获得花色苷的来源到将其纳入相关应用的过程中,都要精心进行所有的步骤。然而,如今,这些过程尚未完全实现标准化。为此,将花色苷的最新发展集中在一个屋檐下进行介绍,将是指导科学文献的一种有用方法。本综述旨在满足上述观点。在这方面,阐述了其生物合成途径。与其他对应物相比,水果和某些副产品在获得花色苷方面具有优越的潜力。详细介绍了花色苷的促进健康的益处。此外,还解释了花色苷提取中创新技术(超声辅助提取、亚临界水提取、脉冲电场提取等)的情况。讨论了稳定性问题,这是限制花色苷在应用中使用的最重要问题之一。总结了共色作用和各种封装技术在解决这些稳定性问题中的作用。这篇批判性综述是一张地图,提供了关于从获得具有功能特性的花色苷到将其纳入各种系统的过程的详细信息。

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