首页> 外文期刊>The British Journal of Nutrition >Fructo-oligosaccharides and iron bioavailability in anaemic rats: the effects on iron species distribution, ferroportin-1 expression, crypt bifurcation and crypt cell proliferation in the caecum
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Fructo-oligosaccharides and iron bioavailability in anaemic rats: the effects on iron species distribution, ferroportin-1 expression, crypt bifurcation and crypt cell proliferation in the caecum

机译:低聚果糖和铁的生物利用度:对盲肠中铁物种分布,ferroportin-1表达,隐窝分叉和隐窝细胞增殖的影响

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The present study investigated the effects of fructo-oligosaccharides (FOS) on the bioavailability of Fe from ferric pyrophosphate (FP), a water-insoluble compound, in Fe-deficient anaemic rats that were subjected to a Hb repletion assay. Male Wistar rats (n 64) were fed adequate or low (8mg/kg) Fe diets for 15d followed by 1 or 2 weeks of Fe repletion with diets providing 35mg Fe/kg as ferrous sulphate (FS), FP or FP that was mixed with 75% FOS in the form of yacon flour or Raftilose P95 (RAF), a purified source of FOS. The effects of FOS were observed within the 1st week of the repletion period. Fe bioavailability was improved by FOS supplementation, as measured by Hb regeneration efficiency and hepatic Fe stores, which were more pronounced in the RAF group. Moreover, RAF supplementation resulted in a higher biological value relative to that of the FP group. FOS supplementation resulted in caecal enlargement, in addition to acidification and Fe species redistribution in the caecal contents relative to the control rats. These effects occurred concomitantly with decreased ferroportin (FPN)-1 expression in the caecal mucosa, which was similar in magnitude to that observed in the FS group. Caecum mucosal morphometry was influenced by FOS supplementation, whereas crypt fission and cell proliferation were highest in the caecum of the RAF group. These results reinforce the effects of FOS as Fe bioavailability enhancers in anaemic rats that are sustained by early changes in their caecal environment (decreased mucosal FPN-1 expression and increased Fe absorbability, crypt fission and cellularity)
机译:本研究调查了果糖寡糖(FOS)对缺铁贫血大鼠进行Hb补充测定的焦磷酸铁(FP)(一种水不溶性化合物)对Fe生物利用度的影响。雄性Wistar大鼠(n 64)饲喂15 d足够或低(8mg / kg)的铁饮食,然后补充1或2周的铁,饮食中提供35mg Fe / kg的硫酸亚铁(FS),FP或FP混合以Yacon面粉或Raftilose P95(RAF)(纯净的FOS来源)的形式含有75%的FOS。在补充期的第一周内观察到FOS的影响。 Fe的生物利用度通过补充FOS得以改善,如通过Hb再生效率和肝Fe储存所测量的,在RAF组中更为明显。此外,相对于FP组,补充RAF的生物学价值更高。相对于对照组,补充FOS导致盲肠增大,除了盲肠内容物酸化和铁物种重新分布。这些作用与盲肠粘膜中铁转运蛋白(FPN)-1表达的降低同时发生,其幅度与FS组中观察到的相似。盲肠粘膜形态受FOS补充的影响,而RAF组盲肠的隐窝裂变和细胞增殖最高。这些结果增强了FOS作为贫血大鼠中铁的生物利用度增强剂的作用,贫血大鼠的盲肠环境的早期变化(黏膜FPN-1表达降低,铁的吸收性,隐窝裂变和细胞性增加)可以维持FOS的作用。

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