铁吸收和平衡的调节。

Q1 Biochemistry, Genetics and Molecular Biology
Clinical Biochemist Reviews Pub Date : 2016-05-01
Daniel F Wallace
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摘要

铁是生物体内的一种基本元素,是许多细胞过程所必需的。铁元素过多或过少都会对人体造成危害,因此生物体已经形成了在安全范围内平衡铁元素的机制。哺乳动物没有排泄过量铁的可控机制,因此体内铁的平衡是在吸收、利用和循环部位调节的。这篇综述将讨论过去 20 年中在促进我们对铁平衡及其调节的理解方面所取得的发现。对铁相关疾病的研究,如铁超载遗传性血色病和各种形式的贫血症,以及细胞和动物模型研究,都有助于增加我们在这一领域的知识。肝脏已成为全身铁调节的主要场所,是铁调节激素肝磷脂素的产生地。肝素是铁吸收和循环的负性调节因子,通过与唯一已知的细胞铁输出因子铁蛋白结合,使其内化和降解,从而减少目标细胞的铁外流,降低血清铁水平。铁代谢领域的大部分研究都集中在血红素的调节及其与铁蛋白的相互作用上。这一领域的研究进展极大地提高了我们对铁代谢及其调控的认识,并促进了针对铁相关疾病的新型诊断和治疗方法的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Regulation of Iron Absorption and Homeostasis.

The Regulation of Iron Absorption and Homeostasis.

Iron is an essential element in biology, required for numerous cellular processes. Either too much or too little iron can be detrimental, and organisms have developed mechanisms for balancing iron within safe limits. In mammals there are no controlled mechanisms for the excretion of excess iron, hence body iron homeostasis is regulated at the sites of absorption, utilisation and recycling. This review will discuss the discoveries that have been made in the past 20 years into advancing our understanding of iron homeostasis and its regulation. The study of iron-associated disorders, such as the iron overload condition hereditary haemochromatosis and various forms of anaemia have been instrumental in increasing our knowledge in this area, as have cellular and animal model studies. The liver has emerged as the major site of systemic iron regulation, being the location where the iron regulatory hormone hepcidin is produced. Hepcidin is a negative regulator of iron absorption and recycling, achieving this by binding to the only known cellular iron exporter ferroportin and causing its internalisation and degradation, thereby reducing iron efflux from target cells and reducing serum iron levels. Much of the research in the iron metabolism field has focussed on the regulation of hepcidin and its interaction with ferroportin. The advances in this area have greatly increased our knowledge of iron metabolism and its regulation and have led to the development of novel diagnostics and therapeutics for iron-associated disorders.

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Clinical Biochemist Reviews
Clinical Biochemist Reviews Biochemistry, Genetics and Molecular Biology-Clinical Biochemistry
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