Biopolymères Interactions Assemblages, INRA, 44300 Nantes, France; email:
Annu Rev Food Sci Technol. 2017 Feb 28;8:35-55. doi: 10.1146/annurev-food-030216-030055. Epub 2017 Jan 4.
The bioavailability of food nutrients and microconstituents is recognized as a determinant factor for optimal health status. However, human and animal studies are expensive and limited by the large amount of potential food bioactive compounds. The search for alternatives is very active and raises many questions. On one hand, in vitro digestion systems are good candidates, but to date only bioaccessibility has been correctly assessed. To go further, to what degree should natural processes be reproduced? What techniques can be used to measure the changes in food properties and structures in situ in a noninvasive way? On the other hand, modeling approaches have good potential, but their development is time-consuming. What compromises should be done between food and physiology realism and computational ease? This review addresses these questions by identifying highly resolved analytical methods, detailed computer models and simulations, and the most promising dynamic in vitro systems.
食物营养素和微量成分的生物利用度被认为是最佳健康状态的决定因素。然而,人体和动物研究既昂贵又受到大量潜在食物生物活性化合物的限制。寻找替代品的工作非常活跃,提出了许多问题。一方面,体外消化系统是很好的候选系统,但到目前为止,仅对生物可及性进行了正确评估。为了更进一步,应该在多大程度上重现自然过程?有哪些技术可以用于非侵入性地原位测量食物性质和结构的变化?另一方面,建模方法具有很好的潜力,但它们的开发耗时。在食物和生理学的真实性与计算的便利性之间应该做出哪些妥协?本文通过确定高分辨率的分析方法、详细的计算机模型和模拟以及最有前途的动态体外系统来解决这些问题。