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适合食品的体外消化模型:新应用领域的机遇和挑战。

In vitro digestion models suitable for foods: Opportunities for new fields of application and challenges.

机构信息

IPOA Research Group, Agro-Food Technology Department, Escuela Politécnica Superior de Orihuela, Universidad Miguel Hernández, Orihuela, Alicante, Spain.

IPOA Research Group, Agro-Food Technology Department, Escuela Politécnica Superior de Orihuela, Universidad Miguel Hernández, Orihuela, Alicante, Spain.

出版信息

Food Res Int. 2018 May;107:423-436. doi: 10.1016/j.foodres.2018.02.055. Epub 2018 Feb 27.

Abstract

In vitro digestion assays simulate the physiological conditions of digestion in vivo and are useful tools for studying and understanding changes, interactions, as well as the bioaccessibility of nutrients, drugs and non-nutritive compounds. The technique is widely used in fields such as nutrition, pharmacology and food chemistry. Over the last 40 years, more than 2500 research articles have been published using in vitro digestion assays (85% of which have been published in the last two decades) to elucidate multiple aspects such as protein digestibility, nutrient interactions or the viability of encapsulated microorganisms. The most recent trend in the use of this technique involves the determination of the antioxidant activity of bioactive compounds after digestion. However, the inability to reproduce certain in vivo digestion events, as well as the multiple models of in vitro digestion, point to a need to optimize and validate the method with in vivo assays to determine its limitations and uses. The purpose of this paper is to provide an overview of the current state of the art of in vitro digestion models through an analysis of how they have evolved in terms of the development of digestion models (parameters, protocols, guidance) and taking into consideration the boom in new fields of application.

摘要

体外消化分析模拟了体内消化的生理条件,是研究和理解营养物质、药物和非营养化合物的变化、相互作用以及生物利用度的有用工具。该技术广泛应用于营养、药理学和食品化学等领域。在过去的 40 年中,已经使用体外消化分析发表了超过 2500 篇研究论文(其中 85%是在过去二十年发表的),以阐明蛋白质消化率、营养物质相互作用或包封微生物的活力等多个方面。该技术的最新趋势涉及在消化后测定生物活性化合物的抗氧化活性。然而,由于无法重现某些体内消化事件,以及体外消化模型的多样性,这表明需要用体内分析来优化和验证该方法,以确定其局限性和用途。本文的目的是通过分析消化模型(参数、方案、指南)的发展,以及考虑到新应用领域的繁荣,概述当前体外消化模型的最新技术状态。

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