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首页> 外文期刊>The FASEB Journal >Ferroportin mediates the intestinal absorption of iron from a nanoparticulate ferritin core mimetic in mice
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Ferroportin mediates the intestinal absorption of iron from a nanoparticulate ferritin core mimetic in mice

机译:铁转运蛋白介导小鼠纳米铁蛋白核心模拟物对铁的肠吸收

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The ferritin core is composed of fine nanoparticulate Fe3+ oxohydroxide, and we have developed a synthetic mimetic, nanoparticulate Fe3+ polyoxohydroxide (nanoFe3+). The aim of this study was to determine how dietary iron derived in this fashion is absorbed in the duodenum. Following a 4 wk run-in on an Fe-deficient diet, mice with intestinal-specific disruption of the Fpn-1 gene (Fpn-KO), or littermate wild-type (WT) controls, were supplemented with Fe2+ sulfate (FeSO4), nanoFe3+, or no added Fe for a further 4 wk. A control group was Fe sufficient throughout. Direct intestinal absorption of nanoFe3+ was investigated using isolated duodenal loops. Our data show that FeSO4 and nanoFe3+ are equally bioavailable in WT mice, and at wk 8 the mean ± sem hemoglobin increase was 18 ± 7 g/L in the FeSO4 group and 30 ± 5 g/L in the nanoFe3+ group. Oral iron failed to be utilized by Fpn-KO mice and was retained in enterocytes, irrespective of the iron source. In summary, although nanoFe3+ is taken up directly by the duodenum its homeostasis is under the normal regulatory control of dietary iron absorption, namely via ferroportin-dependent efflux from enterocytes, and thus offers potential as a novel oral iron supplement.—Aslam, M. F., Frazer, D. M., Faria, N., Bruggraber, S. F. A., Wilkins, S. J., Mirciov, C., Powell, J. J., Anderson, G. J., Pereira, D. I. A. Ferroportin mediates the intestinal absorption of iron from a nanoparticulate ferritin core mimetic in mice.
机译:铁蛋白核心由精细的纳米颗粒Fe3 +羟基氧化物组成,我们已经开发出合成的模拟纳米颗粒Fe3 +聚羟基氧化物(nanoFe3 +)。这项研究的目的是确定以这种方式获得的膳食铁如何在十二指肠中吸收。在缺铁饮食中进行了4周的磨合后,向肠道特异性破坏Fpn-1基因(Fpn-KO)或同窝野生型(WT)对照的小鼠补充了Fe2 +硫酸盐(FeSO4) ,nanoFe3 +或另外4周未添加Fe。对照组在整个过程中铁充足。使用隔离的十二指肠环研究了nanoFe3 +的直接肠道吸收。我们的数据显示,野生型小鼠中FeSO4和nanoFe3 +具有相同的生物利用度,第8周时,FeSO4组的平均±sem血红蛋白增加为18±7 g / L,而nanoFe3 +组的平均±sem血红蛋白增加为30±5 g / L。口服铁未能被Fpn-KO小鼠利用,并且保留在肠上皮细胞中,而与铁来源无关。总而言之,尽管nanoFe3 +被十二指肠直接吸收,但其稳态却处于饮食中铁吸收的正常调节控制下,即通过肠细胞中铁转运蛋白依赖性外排的作用,因此具有作为新型口服铁补充剂的潜力。弗雷泽(Frazer),DM,法里亚(Faria),N.,布鲁格伯(Bruggraber),SFA,威尔金斯(SJ),米尔乔夫(Mirciov,C.),鲍威尔(Powell),杰伊(J.

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