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强化玉米中铁、锌、叶酸和维生素 A 的生物利用度。

Bioavailability of iron, zinc, folic acid, and vitamin A from fortified maize.

机构信息

Laboratory of Human Nutrition, Department of Health Sciences and Technology, Institute of Food Nutrition and Health, ETH Zürich, Zürich, Switzerland.

出版信息

Ann N Y Acad Sci. 2014 Apr;1312:54-65. doi: 10.1111/nyas.12297. Epub 2013 Dec 10.

Abstract

Several strategies appear suitable to improve iron and zinc bioavailability from fortified maize, and fortification per se will increase the intake of bioavailable iron and zinc. Corn masa flour or whole maize should be fortified with sodium iron ethylenediaminetetraacetate (NaFeEDTA), ferrous fumarate, or ferrous sulfate, and degermed corn flour should be fortified with ferrous sulfate or ferrous fumarate. The choice of zinc fortificant appears to have a limited impact on zinc bioavailability. Phytic acid is a major inhibitor of both iron and zinc absorption. Degermination at the mill will reduce phytic acid content, and degermed maize appears to be a suitable vehicle for iron and zinc fortification. Enzymatic phytate degradation may be a suitable home-based technique to enhance the bioavailability of iron and zinc from fortified maize. Bioavailability experiments with low phytic acid-containing maize varieties have suggested an improved zinc bioavailability compared to wild-type counterparts. The bioavailability of folic acid from maize porridge was reported to be slightly higher than from baked wheat bread. The bioavailability of vitamin A provided as encapsulated retinyl esters is generally high and is typically not strongly influenced by the food matrix, but has not been fully investigated in maize.

摘要

几种策略似乎适合提高强化玉米中铁和锌的生物利用度,而强化本身将增加生物可利用铁和锌的摄入量。玉米粉或整粒玉米应该用乙二胺四乙酸铁钠(NaFeEDTA)、富马酸亚铁或硫酸亚铁强化,而脱胚玉米粉应该用硫酸亚铁或富马酸亚铁强化。锌强化剂的选择似乎对锌的生物利用度影响有限。植酸是铁和锌吸收的主要抑制剂。在磨坊进行去胚处理会降低植酸含量,而去胚玉米似乎是铁和锌强化的合适载体。酶法植酸降解可能是一种适合家庭使用的技术,可以提高强化玉米中铁和锌的生物利用度。低植酸含量的玉米品种的生物利用度实验表明,锌的生物利用度比野生型玉米有所提高。玉米粥中叶酸的生物利用度据报道略高于烤小麦面包。作为包封视黄醇酯提供的维生素 A 的生物利用度通常很高,并且通常不受食物基质的强烈影响,但尚未在玉米中进行充分研究。

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