Metabolism and functions of copper in brain

门克斯病 铜缺乏 神经退行性变 平衡 神经科学 铜代谢 新陈代谢 细胞生物学 铜毒性 化学 生物化学 生物 疾病 内科学 医学 有机化学
作者
Ivo F. Scheiber,Julian F. B. Mercer,Ralf Dringen
出处
期刊:Progress in Neurobiology [Elsevier]
卷期号:116: 33-57 被引量:340
标识
DOI:10.1016/j.pneurobio.2014.01.002
摘要

Copper is an important trace element that is required for essential enzymes. However, due to its redox activity, copper can also lead to the generation of toxic reactive oxygen species. Therefore, cellular uptake, storage as well as export of copper have to be tightly regulated in order to guarantee sufficient copper supply for the synthesis of copper-containing enzymes but also to prevent copper-induced oxidative stress. In brain, copper is of importance for normal development. In addition, both copper deficiency as well as excess of copper can seriously affect brain functions. Therefore, this organ possesses ample mechanisms to regulate its copper metabolism. In brain, astrocytes are considered as important regulators of copper homeostasis. Impairments of homeostatic mechanisms in brain copper metabolism have been associated with neurodegeneration in human disorders such as Menkes disease, Wilson's disease and Alzheimer's disease. This review article will summarize the biological functions of copper in the brain and will describe the current knowledge on the mechanisms involved in copper transport, storage and export of brain cells. The role of copper in diseases that have been connected with disturbances in brain copper homeostasis will also be discussed.
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