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缺铁大鼠嗅觉铁(三价铁和二价铁)的吸收。

Olfactory ferric and ferrous iron absorption in iron-deficient rats.

机构信息

Department of Genetics and Complex Diseases, Harvard School of Public Health, Boston, MA 02115, USA.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2012 Jun 15;302(12):L1280-6. doi: 10.1152/ajplung.00004.2012. Epub 2012 Apr 6.

Abstract

The absorption of metals from the nasal cavity to the blood and the brain initiates an important route of occupational exposures leading to health risks. Divalent metal transporter-1 (DMT1) plays a significant role in the absorption of intranasally instilled manganese, but whether iron uptake would be mediated by the same pathway is unknown. In iron-deficient rats, blood (59)Fe levels after intranasal administration of the radioisotope in the ferrous form were significantly higher than those observed for iron-sufficient control rats. Similar results were obtained when ferric iron was instilled intranasally, and blood levels of (59)Fe were even greater in the iron-deficient rats compared with the amount of ferrous iron absorbed. Experiments with Belgrade (b/b) rats showed that DMT1 deficiency limited ferric iron uptake from the nasal cavity to the blood compared with +/b controls matched for iron deficiency. These results indicate that olfactory uptake of ferric iron by iron-deficient rats involves DMT1. Western blot experiments confirmed that DMT1 levels are significantly higher in iron-deficient rats compared with iron-sufficient controls in olfactory tissue. Thus the molecular mechanism of olfactory iron absorption is regulated by body iron status and involves DMT1.

摘要

鼻腔内金属向血液和大脑的吸收会引发重要的职业暴露途径,从而带来健康风险。二价金属转运蛋白 1(DMT1)在鼻腔内注入锰的吸收中起着重要作用,但铁的摄取是否通过相同途径介导尚不清楚。在缺铁大鼠中,鼻腔内给予放射性同位素亚铁形式后,血液中的(59)Fe 水平明显高于铁充足的对照组大鼠。当鼻腔内注入三价铁时,也得到了类似的结果,与吸收的亚铁量相比,缺铁大鼠血液中的(59)Fe 水平甚至更高。贝尔格莱德(b/b)大鼠的实验表明,与缺铁匹配的+/b 对照组相比,DMT1 缺乏限制了鼻腔内三价铁向血液的摄取。这些结果表明,缺铁大鼠通过嗅觉吸收三价铁涉及 DMT1。Western blot 实验证实,与铁充足的对照组相比,缺铁大鼠嗅觉组织中的 DMT1 水平明显更高。因此,嗅觉铁吸收的分子机制受机体铁状态的调节,并涉及 DMT1。

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