去铁胺
氧化应激
肺纤维化
脂质过氧化
铁蛋白
新陈代谢
纤维化
医学
脂质代谢
癌症研究
化学
细胞生物学
生物
生物化学
病理
作者
Yanchun Sun,Yu Ren,Liyun Song,Yikun Wang,Tiangang Li,Yingli Wu,Li Li,Zhongshan Yang
标识
DOI:10.1016/j.biopha.2024.116270
摘要
Iron homeostasisis is integral to normal physiological and biochemical processes of lungs. The maintenance of iron homeostasis involves the process of intake, storage and output, dependening on iron-regulated protein/iron response element system to operate tightly metabolism-related genes, including TFR1, DMT1, Fth, and FPN. Dysregulation of iron can lead to iron overload, which increases the virulence of microbial colonisers and the occurrence of oxidative stress, causing alveolar epithelial cells to undergo necrosis and apoptosis, and form extracellular matrix. Accumulated iron drive iron-dependent ferroptosis to exacerbated pulmonary fibrosis. Notably, the iron chelator deferoxamine and the lipophilic antioxidant ferritin-1 have been shown to attenuate ferroptosis and inhibit lipid peroxidation in pulmonary fibrosis. The paper summarises the regulatory mechanisms of dysregulated iron metabolism and ferroptosis in the development of pulmonary fibrosis. Targeting iron metabolism may be a potential therapeutic strategy for the prevention and treatment of pulmonary fibrosis.
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