How food matrices modulate folate bioaccessibility: A comprehensive overview of recent advances and challenges

生物利用度 消化(炼金术) 食品科学 生化工程 食物蛋白 食品 化学 生物技术 生物 生物信息学 色谱法 工程类
作者
Fengyuan Liu,Minnamari Edelmann,Vieno Piironen,Yuting Li,Xiaozhen Liu,Jing‐Kun Yan,Lin Li,Susanna Kariluoto
出处
期刊:Comprehensive Reviews in Food Science and Food Safety [Wiley]
卷期号:23 (3): e13328-e13328 被引量:11
标识
DOI:10.1111/1541-4337.13328
摘要

Abstract The incomplete absorption of dietary folate makes it crucial to understand how food matrices affect folate bioaccessibility. Bioavailability encompasses bioaccessibility, which depicts the proportion that is liberated from the food matrix during digestion and becomes available for absorption. Bioavailability studies are expensive and difficult to control, whereas bioaccessibility studies utilize in vitro digestion models to parameterize the complex digestion, allowing the evaluation of the effect of food matrices on bioaccessibility. This review covers the folate contents in various food matrices, the methods used to determine and the factors affecting folate bioaccessibility, and the advances and challenges in understanding how food matrices affect folate bioaccessibility. The methods for determining bioaccessibility have been improved in the last decade. Current research shows that food matrices modulate folate bioaccessibility by affecting the liberation and stability of folate during digestion but do not provide enough information about folate and food component interactions at the molecular level. In addition, information on folate interconversion and degradation during digestion is scant, hindering our understanding of the impact of food matrices on folate stability. Moreover, the role of conjugase inhibitors should not be neglected when evaluating the nutritional value of food folates. Due to the complexity of food digestion, holistic methods should be applied to investigate bioaccessibility. By synthesizing the current state of knowledge on this topic, this review highlights the lack of in‐depth understanding of the mechanisms of how food matrices modulate folate bioaccessibility and provides insights into potential strategies for accurate evaluation of the nutritional value of dietary folate.
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