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富铁米粉中葡萄糖酸亚铁的体外消化吸收及 Caco-2 细胞模型评价。

The effect of iron absorption in ferrous gluconate form from enriched rice flour using an digestion model and a Caco-2 cell model.

机构信息

China Food Flavor and Nutrition Health Innovation Center, National Soybean Processing Industry Technology Innovation Center, Beijing Technology and Business University, Beijing, China.

Shenzhen Key Laboratory of Metabolic Health, Center for Energy Metabolism and Reproduction, Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, People's Republic of China.

出版信息

Food Funct. 2024 Aug 27;15(17):8788-8796. doi: 10.1039/d4fo01441c.

Abstract

Iron deficiency can cause serious diseases in infants and young children such as indigestion, anemia, and nervous system dysplasia. Consumption of high-iron rice flour can prevent iron deficiency. The objective of this study was to evaluate the potential application of ferrous gluconate as an iron source in high-iron rice flour used as a type of accessory food for infants and young children. In this study, the differences in iron absorption ability between ferrous gluconate and ferrous fumarate in rice flour with the same ingredients in both high and low phytic acid systems were evaluated. The results showed that there was no significant difference in the bioaccessibility/bioavailability between ferrous gluconate and ferrous fumarate at both low and high phytic acid contents. In low phytic acid and high phytic acid systems, the iron absorption rate of ferrous gluconate is 11.53% and 13.45% higher than that of ferrous fumarate, respectively ( < 0.05). In summary, the iron absorption rate of ferrous gluconate was higher than that of ferrous fumarate in the rice flour system. Additionally, the low phytic acid environment is more conducive to iron uptake and utilization. Therefore, ferrous gluconate can be used as an alternative source of iron in accessory foods for infants and young children.

摘要

缺铁会导致婴幼儿出现消化不良、贫血和神经系统发育不良等严重疾病。食用高铁米粉可以预防缺铁。本研究旨在评估葡萄糖酸亚铁作为婴幼儿辅助食品中高铁米粉的铁源的潜在应用。在这项研究中,评估了在高、低植酸体系中具有相同成分的米粉中,葡萄糖酸亚铁和富马酸亚铁的铁吸收能力的差异。结果表明,在低、高植酸含量下,葡萄糖酸亚铁和富马酸亚铁的生物利用度/生物利用度没有显著差异。在低植酸和高植酸体系中,葡萄糖酸亚铁的铁吸收率分别比富马酸亚铁高 11.53%和 13.45%(<0.05)。综上所述,在米粉体系中,葡萄糖酸亚铁的铁吸收率高于富马酸亚铁。此外,低植酸环境更有利于铁的吸收和利用。因此,葡萄糖酸亚铁可以作为婴幼儿辅助食品中铁的替代来源。

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