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The role of iron in brain ageing and neurodegenerative disorders

机译:铁在脑衰老和神经退行性疾病中的作用

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摘要

In the CNS, iron in several proteins is involved in many important processes such as oxygen transportation, oxidative phosphorylation, myelin production, and the synthesis and metabolism of neurotransmitters. Abnormal iron homoeostasis can induce cellular damage through hydroxyl radical production, which can cause the oxidation and modification of lipids, proteins, carbohydrates, and DNA. During ageing, different iron complexes accumulate in brain regions associated with motor and cognitive impairment. In various neurodegenerative diseases, such as Alzheimer’s disease and Parkinson’s disease, changes in iron homoeostasis result in altered cellular iron distribution and accumulation. MRI can often identify these changes, thus providing a potential diagnostic biomarker of neurodegenerative diseases. An important avenue to reduce iron accumulation is the use of iron chelators that are able to cross the blood–brain barrier, penetrate cells, and reduce excessive iron accumulation, thereby affording neuroprotection.
机译:在中枢神经系统中,几种蛋白质中的铁参与许多重要的过程,例如氧气运输,氧化磷酸化,髓鞘生成以及神经递质的合成和代谢。异常的铁稳态会通过产生羟基自由基而引起细胞损伤,从而引起脂质,蛋白质,碳水化合物和DNA的氧化和修饰。在老化过程中,与运动和认知障碍相关的大脑区域会积聚不同的铁络合物。在各种神经退行性疾病(例如阿尔茨海默氏病和帕金森氏病)中,铁稳态的改变导致细胞铁分布和积累的改变。 MRI通常可以识别这些变化,从而提供了神经退行性疾病的潜在诊断生物标志物。减少铁蓄积的重要途径是使用铁螯合剂,它们能够穿过血脑屏障,穿透细胞并减少过多的铁蓄积,从而提供神经保护作用。

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