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铁调素、亚铁转运蛋白和 Nrf2 在心脏铁代谢中的三联作用:从健康到疾病。

Triad role of hepcidin, ferroportin, and Nrf2 in cardiac iron metabolism: From health to disease.

机构信息

Department of Medical Biochemistry, Dr. ALM Post Graduate Institute for Basic Medical Sciences, University of Madras, Chennai, 600113, Tamil Nadu, India.

Department of Pharmacology and Neurosciences, Creighton University, 2500 California Plaza, Omaha, NE, USA.

出版信息

J Trace Elem Med Biol. 2022 Jan;69:126882. doi: 10.1016/j.jtemb.2021.126882. Epub 2021 Oct 22.

Abstract

Iron is an essential trace element required for several vital physiological and developmental processes, including erythropoiesis, bone, and neuronal development. Iron metabolism and oxygen homeostasis are interlinked to perform a vital role in the functionality of the heart. The metabolic machinery of the heart utilizes almost 90 % of oxygen through the electron transport chain. To handle this tremendous level of oxygen, the iron metabolism in the heart is utmost crucial. Iron availability to the heart is therefore tightly regulated by (i) the hepcidin/ferroportin axis, which controls dietary iron absorption, storage, and recycling, and (ii) iron regulatory proteins 1 and 2 (IRP1/2) via hypoxia inducible factor 1 (HIF1) pathway. Despite iron being vital to the heart, recent investigations have demonstrated that iron imbalance is a common manifestation in conditions of heart failure (HF), since free iron readily transforms between Fe and Fevia the Fenton reaction, leading to reactive oxygen species (ROS) production and oxidative damage. Therefore, to combat iron-mediated oxidative stress, targeting Nrf2/ARE antioxidant signaling is rational. The involvement of Nrf2 in regulating several genes engaged in heme synthesis, iron storage, and iron export is beginning to be uncovered. Consequently, it is possible that Nrf2/hepcidin/ferroportin might act as an epicenter connecting iron metabolism to redox alterations. However, the mechanism bridging the two remains obscure. In this review, we tried to summarize the contemporary insight of how cardiomyocytes regulate intracellular iron levels and discussed the mechanisms linking cardiac dysfunction with iron imbalance. Further, we emphasized the impact of Nrf2 on the interplay between systemic/cardiac iron control in the context of heart disease, particularly in myocardial ischemia and HF.

摘要

铁是几种重要生理和发育过程所需的必需微量元素,包括红细胞生成、骨骼和神经元发育。铁代谢和氧平衡相互关联,在心功能中起着至关重要的作用。心脏的代谢机制通过电子传递链几乎消耗 90%的氧气。为了处理如此巨大的氧气水平,心脏的铁代谢至关重要。因此,心脏中铁的可用性受到(i)hepcidin/ferroportin 轴的严格调节,该轴控制饮食中铁的吸收、储存和再循环,以及(ii)铁调节蛋白 1 和 2 (IRP1/2) 通过缺氧诱导因子 1 (HIF1) 途径。尽管铁对心脏至关重要,但最近的研究表明,铁失衡是心力衰竭 (HF) 等疾病的常见表现,因为游离铁在 Fenton 反应中很容易在 Fe 和 Fev 之间转化,导致活性氧 (ROS) 的产生和氧化损伤。因此,为了对抗铁介导的氧化应激,靶向 Nrf2/ARE 抗氧化信号是合理的。Nrf2 参与调节几种参与血红素合成、铁储存和铁输出的基因的作用开始被揭示。因此,Nrf2/hepcidin/ferroportin 可能作为连接铁代谢和氧化还原改变的中心。然而,连接两者的机制仍然不清楚。在这篇综述中,我们试图总结心肌细胞调节细胞内铁水平的当代见解,并讨论将心脏功能障碍与铁失衡联系起来的机制。此外,我们强调了 Nrf2 在心脏病背景下,特别是在心肌缺血和 HF 中,对全身/心脏铁控制相互作用的影响。

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