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铅暴露对发育期和老年期大鼠脑内铁稳态和 DMT1/FP1 表达的影响。

The effect of lead exposure on brain iron homeostasis and the expression of DMT1/FP1 in the brain in developing and aged rats.

机构信息

Department of Occupational Health and Toxicology, School of Public Health, Nanchang University, BaYi Road 461, Nanchang 330006, PR China.

出版信息

Toxicol Lett. 2013 Feb 4;216(2-3):108-23. doi: 10.1016/j.toxlet.2012.11.024. Epub 2012 Dec 5.

Abstract

The relation between lead (Pb) and iron (Fe) becomes increasingly concerned because they are both divalent metals that are absorbed by the same intestinal mechanism, and Pb exposure and Fe deficiency in the developmental brain, as well as Fe overload in the aged brain, can cause cognitive deficits. However, the interaction between Pb exposure and Fe status in the brain has not been established. Therefore, in the current study, we examined the effects of maternal ingestion of Pb in drinking water during gestation and lactation on the Fe status and the expression of divalent metal transporter 1 (DMT1) and ferroportin 1 (FP1) in the brain of offspring. The offspring were followed through old age, with measurements taken at postnatal week 3 (PNW3), 41 (PNW41) and 70 (PNW70). Pb exposure increases the Fe content in the old-aged rats' brain, which might be not subjected to DMT1 mediating, but may be associated with the decrease expression of FP1. Furthermore, the effect of Pb on FP1 expression is regulated at transcriptional and posttranscriptional levels. The perturbation in Fe homeostasis may contribute to the neurotoxicology consequences induced by Pb exposure, and FP1 may play a role in Pb-induced Fe cumulation in the brain.

摘要

铅 (Pb) 和铁 (Fe) 之间的关系越来越受到关注,因为它们都是二价金属,通过相同的肠道机制被吸收,而发育期大脑中的 Pb 暴露和 Fe 缺乏以及衰老期大脑中的 Fe 过载,都会导致认知缺陷。然而,Pb 暴露和大脑中 Fe 状态之间的相互作用尚未确定。因此,在当前的研究中,我们研究了母体在妊娠期和哺乳期通过饮用水摄入 Pb 对后代大脑中 Fe 状态以及二价金属转运蛋白 1 (DMT1) 和亚铁转运蛋白 1 (FP1) 表达的影响。对后代进行了跟踪研究,直到老年期,在出生后第 3 周 (PNW3)、41 周 (PNW41) 和 70 周 (PNW70) 进行测量。Pb 暴露会增加老年大鼠大脑中的 Fe 含量,这可能不受 DMT1 介导,但可能与 FP1 表达减少有关。此外,Pb 对 FP1 表达的影响是在转录和转录后水平上进行调节的。Fe 动态平衡的紊乱可能导致 Pb 暴露引起的神经毒理学后果,而 FP1 可能在 Pb 诱导的大脑 Fe 蓄积中发挥作用。

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