Department of Laboratory Medicine, Radboud Institute of Molecular Life Sciences, Radboud University Medical Center, Nijmegen, Netherlands.
Department of Nephrology, Radboud Institute of Health Sciences, Radboud University Medical Center, Nijmegen, Netherlands.
Nat Rev Nephrol. 2020 Feb;16(2):77-98. doi: 10.1038/s41581-019-0197-5. Epub 2019 Sep 25.
Iron is an essential element that is indispensable for life. The delicate physiological body iron balance is maintained by both systemic and cellular regulatory mechanisms. The iron-regulatory hormone hepcidin assures maintenance of adequate systemic iron levels and is regulated by circulating and stored iron levels, inflammation and erythropoiesis. The kidney has an important role in preventing iron loss from the body by means of reabsorption. Cellular iron levels are dependent on iron import, storage, utilization and export, which are mainly regulated by the iron response element-iron regulatory protein (IRE-IRP) system. In the kidney, iron transport mechanisms independent of the IRE-IRP system have been identified, suggesting additional mechanisms for iron handling in this organ. Yet, knowledge gaps on renal iron handling remain in terms of redundancy in transport mechanisms, the roles of the different tubular segments and related regulatory processes. Disturbances in cellular and systemic iron balance are recognized as causes and consequences of kidney injury. Consequently, iron metabolism has become a focus for novel therapeutic interventions for acute kidney injury and chronic kidney disease, which has fuelled interest in the molecular mechanisms of renal iron handling and renal injury, as well as the complex dynamics between systemic and local cellular iron regulation.
铁是一种生命必需的元素。系统和细胞调节机制共同维持着微妙的生理体铁平衡。铁调节激素铁调素可确保维持足够的全身铁水平,并受循环和储存铁水平、炎症和红细胞生成的调节。肾脏通过重吸收在防止铁从体内丢失方面起着重要作用。细胞内铁水平取决于铁的摄取、储存、利用和输出,主要由铁反应元件-铁调节蛋白(IRE-IRP)系统调节。在肾脏中,已经确定了独立于 IRE-IRP 系统的铁转运机制,这表明该器官中存在额外的铁处理机制。然而,肾脏铁处理的知识空白仍然存在,包括转运机制的冗余、不同肾小管段的作用以及相关的调节过程。细胞内和系统性铁平衡的紊乱被认为是肾脏损伤的原因和后果。因此,铁代谢已成为急性肾损伤和慢性肾脏病新的治疗干预措施的重点,这激发了人们对肾脏铁处理和肾脏损伤的分子机制以及系统性和局部细胞铁调节之间复杂动态关系的兴趣。