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低转铁蛋白血症杂合子正常和缺铁小鼠的转铁蛋白反应;对铁和锰积累的影响。

Transferrin response in normal and iron-deficient mice heterozygotic for hypotransferrinemia; effects on iron and manganese accumulation.

作者信息

Malecki E A, Devenyi A G, Beard J L, Connor J R

机构信息

Department of Pediatrics, College of Medicine, Pennsylvania State University, Hershey 17033, USA.

出版信息

Biometals. 1998 Sep;11(3):265-76. doi: 10.1023/a:1009280922387.

Abstract

Hypotransferrinemia is a genetic defect in mice resulting < 1% of normal plasma transferrin (Tf) concentrations; heterozygotes for this mutation (+/hpx) have low circulating Tf concentrations. These mice provide a unique opportunity to examine the developmental pattern and response of Tf to iron-deficient diets, and furthermore, to address the controversial role of Tf in Mn transport. Twenty-three weanling +/hpx mice and forty-five wild-type BALB/cJ mice were either killed at weaning or fed diets containing either 13 or 72 mg kg-1 Fe, and killed after four or eight weeks. Plasma Tf concentrations were lower in +/hpx mice, plasma Tf nearly doubled and liver Tf was only 50% of normal in response to iron deficiency. Brain iron concentration did not correlate significantly with either plasma Tf or TIBC. However, iron accumulation into brain continued with iron deficiency whereas most other organs had less iron. These results imply that either there is a selected targeting of iron to the brain by plasma Tf or there is an alternative iron delivery system to the brain. Furthermore, we observed no differences in tissue distribution of 54Mn despite the differences in circulating Tf concentrations and body iron stores; this suggests that there are non-Tf dependent mechanisms for Mn transport.

摘要

低转铁蛋白血症是小鼠中的一种遗传缺陷,导致血浆转铁蛋白(Tf)浓度低于正常水平的1%;该突变的杂合子(+/hpx)循环Tf浓度较低。这些小鼠为研究Tf对缺铁饮食的发育模式和反应提供了独特的机会,此外,还能探讨Tf在锰运输中的争议性作用。23只断奶的+/hpx小鼠和45只野生型BALB/cJ小鼠在断奶时被处死,或喂食含13或72 mg kg-1铁的饲料,并在4周或8周后处死。+/hpx小鼠的血浆Tf浓度较低,缺铁时血浆Tf几乎翻倍,肝脏Tf仅为正常水平的50%。脑铁浓度与血浆Tf或总铁结合力(TIBC)均无显著相关性。然而,缺铁时脑内铁蓄积持续存在,而大多数其他器官的铁含量减少。这些结果表明,要么血浆Tf对铁有选择性地靶向输送至脑,要么存在另一种向脑输送铁的系统。此外,尽管循环Tf浓度和机体铁储备存在差异,但我们观察到54Mn的组织分布没有差异;这表明存在非Tf依赖的锰运输机制。

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