4.7 Review

Brain Iron Metabolism, Redox Balance and Neurological Diseases

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Deubiquitylase OTUD3 prevents Parkinson's disease through stabilizing iron regulatory protein 2

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Iron Dysregulation in Mitochondrial Dysfunction and Alzheimer's Disease

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Summary: Alzheimer's disease is a neurodegenerative disease characterized by neuronal dysfunction and memory and cognitive decline. Iron dysregulation and iron-dependent cell death are associated with AD. Targeting ferroptosis, a specific form of cell death, may be a potential therapeutic intervention for AD.

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Interactions of dopamine, iron, and alpha-synuclein linked to dopaminergic neuron vulnerability in Parkinson's disease and Neurodegeneration with Brain Iron Accumulation disorders

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Hippocampal Iron Accumulation Impairs Synapses and Memory via Suppressing Furin Expression and Downregulating BDNF Maturation

Yating Zhang et al.

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Astrocyte-derived hepcidin controls iron traffic at the blood-brain-barrier via regulating ferroportin 1 of microvascular endothelial cells

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Overexpression of Mitochondrial Ferritin Enhances Blood-Brain Barrier Integrity following Ischemic Stroke in Mice by Maintaining Iron Homeostasis in Endothelial Cells

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Mitochondrial ferritin alleviates apoptosis by enhancing mitochondrial bioenergetics and stimulating glucose metabolism in cerebral ischemia reperfusion

Peina Wang et al.

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Brain iron deficiency and affected contextual fear memory in mice with conditional Ferroportin1 ablation in the brain

Qiong Wu et al.

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