Wade Quinn W, Chiou Brian, Connor James R
Department of Neurosurgery, Penn State College of Medicine, Hershey, PA, United States.
Department of Neurosurgery, Penn State College of Medicine, Hershey, PA, United States.
Adv Pharmacol. 2019;84:123-145. doi: 10.1016/bs.apha.2019.02.005. Epub 2019 Mar 22.
Iron transport to the brain is a critically important and highly regulated process necessary for proper brain function. This review aims to summarize iron uptake mechanisms in the brain and the importance of sex and genotype on this uptake. In restless legs syndrome (RLS), brain iron uptake has been hypothesized to be dysregulated, leading to the clinically observed brain iron deficiency, so this review specifically comments on this disorder. The review covers transferrin-bound transport and the more recently discovered role of ferritin in brain iron delivery. Studies on the impact of sex, MEIS1 (associated with RLS), and H63D gene variants have revealed critical regulatory mechanisms and driving factors that significantly impact iron transport that may considerably affect the clinical treatment of RLS. RLS has provided insights into the gaps in knowledge underlying brain iron uptake mechanisms and their regulation, which in turn have provided insights into the pathophysiology of RLS.
铁向大脑的转运是一个极其重要且受到高度调节的过程,对于大脑的正常功能至关重要。本综述旨在总结大脑中的铁摄取机制以及性别和基因型对这种摄取的重要性。在不安腿综合征(RLS)中,大脑铁摄取被认为存在失调,导致临床上观察到的脑铁缺乏,因此本综述特别对这种疾病进行了评论。该综述涵盖了转铁蛋白结合转运以及铁蛋白在脑铁传递中最近发现的作用。关于性别、与RLS相关的MEIS1和H63D基因变体影响的研究揭示了显著影响铁转运的关键调节机制和驱动因素,这可能会对RLS的临床治疗产生重大影响。RLS为了解大脑铁摄取机制及其调节背后的知识空白提供了见解,进而为RLS的病理生理学提供了见解。