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一种适用于食品的标准化半动态体外消化方法——国际共识。

A standardised semi-dynamic in vitro digestion method suitable for food - an international consensus.

机构信息

Quadram Institute Bioscience, Norwich Research Park, Norwich, NR4 7UQ, UK.

出版信息

Food Funct. 2020 Feb 26;11(2):1702-1720. doi: 10.1039/c9fo01293a.

Abstract

The link between food and human health is increasingly a topic of interest. One avenue of study has been to assess food disintegration and interactions within the gastrointestinal tract. In vitro digestion models have been widely used to overcome the constrictions associated with in vivo methodology. The COST Action INFOGEST developed an international, harmonised protocol for static simulation of digestion in the upper gastrointestinal tract of adults. This protocol is widely used; however, it is restricted to providing end-point assessment without considering the possible structural changes. On the other hand, there are dynamic models that provide more physiologically relevant data but are expensive and difficult to access. There is a gap between these models. The method outlined in this article provides an intermediate model; it builds upon the harmonised static model and now includes crucial kinetic aspects associated with the gastric phase of digestion, including gradual acidification, fluid and enzyme secretion and emptying. This paper provides guidance and standardised recommendations of a physiologically relevant semi-dynamic in vitro simulation of upper gastrointestinal tract digestion, with particular focus on the gastric phase. Adaptations of this model have already been used to provide kinetic data on nutrient digestion and structural changes during the gastric phase that impact on nutrient absorption. Moreover, it provides a simple tool that can be used in a wide range of laboratories.

摘要

食物与人类健康之间的联系越来越受到关注。其中一个研究方向是评估食物在胃肠道内的崩解和相互作用。体外消化模型已被广泛用于克服体内方法学的局限性。COST 行动 INFOGEST 制定了一项国际协调方案,用于模拟成人上胃肠道的静态消化。该方案被广泛应用;然而,它仅限于提供终点评估,而不考虑可能的结构变化。另一方面,还有一些动态模型可以提供更符合生理的相关数据,但价格昂贵且难以获取。这些模型之间存在差距。本文概述的方法提供了一种中间模型;它建立在协调的静态模型基础上,现在包括与消化的胃期相关的关键动力学方面,包括逐渐酸化、液体和酶的分泌和排空。本文提供了一种生理相关的上胃肠道消化半动态体外模拟的指导和标准化建议,特别关注胃期。该模型的改编已经用于提供胃期消化过程中营养素消化和结构变化的动力学数据,这些变化会影响营养素的吸收。此外,它提供了一种简单的工具,可以在广泛的实验室中使用。

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