Ramakrishnan Latha, Pedersen Sofia L, Toe Quezia K, Quinlan Gregory J, Wort Stephen J
Cardiorespiratory Interface - Vascular Biology, The National Heart and Lung Institute, Faculty of Medicine, Imperial College London, London, United Kingdom.
Front Physiol. 2018 May 31;9:641. doi: 10.3389/fphys.2018.00641. eCollection 2018.
The interplay between iron and oxygen is longstanding and central to all aerobic life. Tight regulation of these interactions including homeostatic regulation of iron utilization ensures safe usage of this limited resource. However, when control is lost adverse events can ensue, which are known to contribute to an array of disease processes. Recently, associations between disrupted iron homeostasis and pulmonary artery hypertension (PAH) have been described with the suggestion that there is a contributory link with disease. This review provides a background for iron regulation in humans, describes PAH classifications, and discusses emerging literature, which suggests a role for disrupted iron homeostatic control in various sub-types of PAH, including a role for decompartmentalization of hemoglobin. Finally, the potential for therapeutic options to restore iron homeostatic balance in PAH are discussed.
铁与氧之间的相互作用由来已久,是所有需氧生命的核心。对这些相互作用的严格调控,包括铁利用的稳态调节,确保了这种有限资源的安全使用。然而,一旦失去控制,就可能引发不良事件,已知这些事件会导致一系列疾病进程。最近,已有研究描述了铁稳态破坏与肺动脉高压(PAH)之间的关联,并暗示其与疾病存在因果联系。本综述提供了人体铁调节的背景知识,描述了PAH的分类,并讨论了新兴文献,这些文献表明铁稳态控制破坏在PAH的各种亚型中发挥作用,包括血红蛋白去分隔化的作用。最后,还讨论了恢复PAH中铁稳态平衡的治疗选择潜力。