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Iron- and Zinc-Fortified Lentil (Lens culinaris Medik.) Demonstrate Enhanced and Stable Iron Bioavailability After Storage

机译:铁和锌强化扁豆(镜片Culinaris Medik。)在储存后展示了增强和稳定的铁生物利用度

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摘要

Lentil (Lens culinaris Medik.) is a quick-cooking, rapidly expanding protein-rich crop with high iron (Fe) and zinc (Zn), but low bioavailability due to the presence of phytate, similar to other grains. Lentils dual fortified with Fe and Zn can significantly improve the bioavailable Fe and Zn content. Three milled lentil product types (LPTs) were fortified with Fe using NaFeEDTA [ethylenediaminetetraacetic acid iron (III) sodium salt] (Fe fortified) or Zn from ZnSO4·H2O (Zn fortified), or both (dual fortified). Fe, Zn, phytic acid (PA) concentration, and relative Fe bioavailability (RFeB%) were assessed for samples from two fortified batches (initial and for 1 year stored). Fe, Zn, and RFeB% increased significantly in two batches of samples from the three LPTs, and decreased by 5–15% after 1 year of storage. PA concentration decreased from 8 to 15% after fortification of all samples from two batches of the three LPTs but showed different patterns of influence after storage. Dual-fortified lentil fortified with 24 mg Fe and 12 mg Zn 100 g−1 lentil had the highest amount of Fe and Zn, and the lowest PA concentration, and RFeB% was increased from 91.3 to 519.5%. Significant (p ≤ 0.01) Pearson correlations were observed between Fe concentration vs. PA:Fe molar ratio (MR), Fe concentration vs. RFeB%, RFeB% vs. PA:Fe MR, and Zn concentration vs. PA:Zn MR in all samples from two batches of the three LPTs. In conclusion, dual-fortified lentil can contribute significant bioavailable Fe and Zn to populations at risk of Fe and Zn deficiency.
机译:扁豆(镜片Culinaris Medik。)是一种快速烹饪,快速扩张的富含蛋白质丰富的蛋白质作物,具有高铁(Fe)和锌(Zn),但由于植物存在而具有低生物利用度,类似于其他晶粒。用Fe和Zn强化扁豆,可以显着改善生物可利用的Fe和Zn含量。使用NaFeedta [乙二胺四乙酸铁(III)钠盐(Fe强化)或ZnSO4·H2O(Zn强化)的ZnO4·H2O(Zn强化)或两者(双强化),用Fe强化三种轧件扁豆产品类型(LPTS)。评估Fe,Zn,植酸酸(PA)浓度和相对Fe生物利用度(RFEB%),用于从两个强化批次(初始和储存1年)的样品。 Fe,Zn和RFEB%在三个LPTS的两批样品中显着增加,1年后储存后的5-15%降低。在从三个LPTS的两批的所有样品的强化后,PA浓度从8-15%降低,但在储存后显示出不同的影响模式。用24mg Fe和12 mg Zn 100 g-1扁豆强化双强化扁豆具有最多的Fe和Zn,并且PA浓度最低,RFEB%从91.3增加到519.5%。在Fe浓度与PA:Fe摩尔比(MR),Fe浓度与RFEB%,RFEB%Vs.Pa:Fe Mr,Zn浓度与PA:Zn Mr中,观察到显着(p≤0.01)Pearson相关性所有来自三个LPT的样品。总之,双重强化扁豆可以为Fe和Zn缺乏风险的群体贡献显着的生物利用Fe和Zn。

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