School of Health Sciences, Purdue University, West Lafayette, Indiana, USA.
Pharmacol Ther. 2012 Feb;133(2):177-88. doi: 10.1016/j.pharmthera.2011.10.006. Epub 2011 Nov 13.
Iron (Fe) and copper (Cu) are essential to neuronal function; excess or deficiency of either is known to underlie the pathoetiology of several commonly known neurodegenerative disorders. This delicate balance of Fe and Cu in the central milieu is maintained by the brain barrier systems, i.e., the blood-brain barrier (BBB) between the blood and brain interstitial fluid and the blood-cerebrospinal fluid barrier (BCB) between the blood and cerebrospinal fluid (CSF). This review provides a concise description on the structural and functional characteristics of the brain barrier systems. Current understanding of Fe and Cu transport across the brain barriers is thoroughly examined, with major focuses on whether the BBB and BCB coordinate the direction of Fe and Cu fluxes between the blood and brain/CSF. In particular, the mechanism by which pertinent metal transporters in the barriers, such as the transferrin receptor (TfR), divalent metal transporter (DMT1), copper transporter (CTR1), ATP7A/B, and ferroportin (FPN), regulate metal movement across the barriers is explored. Finally, the detrimental consequences of dysfunctional metal transport by brain barriers, as a result of endogenous disorders or exogenous insults, are discussed. Understanding the regulation of Fe and Cu homeostasis in the central nervous system aids in the design of new drugs targeted on the regulatory proteins at the brain barriers for the treatment of metal's deficiency or overload-related neurological diseases.
铁(Fe)和铜(Cu)对神经元功能至关重要;已知这两种元素的过多或缺乏是几种常见神经退行性疾病的发病基础。大脑屏障系统(即血液与脑间质液之间的血脑屏障(BBB)和血液与脑脊液(CSF)之间的血脑脊液屏障(BCB))维持着中枢环境中 Fe 和 Cu 的这种微妙平衡。本综述简要描述了大脑屏障系统的结构和功能特征。本文彻底检查了 Fe 和 Cu 穿过大脑屏障的转运的现有理解,主要关注 BBB 和 BCB 是否协调血液和大脑/CSF 之间 Fe 和 Cu 通量的方向。特别是,探讨了屏障中相关金属转运蛋白(如转铁蛋白受体(TfR)、二价金属转运蛋白 1(DMT1)、铜转运蛋白 1(CTR1)、ATP7A/B 和铁蛋白(FPN))调节金属穿过屏障的运动的机制。最后,讨论了由于内源性疾病或外源性损伤导致大脑屏障金属转运功能障碍的有害后果。了解中枢神经系统中 Fe 和 Cu 动态平衡的调节有助于设计针对大脑屏障调节蛋白的新药,用于治疗与金属缺乏或过载相关的神经疾病。