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Astroglial and microglial contributions to iron metabolism disturbance in Parkinson's disease

机译:对帕金森病的铁代谢紊乱的睾丸痛和微胶质贡献

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摘要

Understandings of the disturbed iron metabolism in Parkinson's disease (PD) are largely from the perspectives of neurons. Neurodegenerative processes in PD trigger universal and conserved astroglial dysfunction and microglial activation. In this review, we start with astroglia and microglia in PD with an emphasis on their roles in spreading a-synuclein pathology, and then focus on their contributions in iron metabolism under normal conditions and the diseased state of PD. Elevated iron in the brain regions affects glial features, meanwhile, glial effects on neuronal iron metabolism are largely dependent on their releasing factors. These advances might be valuable for better understanding and modulating iron metabolism disturbance in PD.
机译:帕金森病(Pd)的令人不安的铁代谢的理解主要是神经元的视角。 PD中的神经变性过程引发普通和保守的星形功能障碍和微胶质激活。 在本综述中,我们从PD中开始,在PD中开始,强调其在传播Anguclein病理学方面的作用,然后专注于在正常条件下的铁代谢的贡献和Pd的患病状态。 同时,大脑区域的升高的铁影响了神经胶质功能,对神经元铁代谢的胶质作用很大程度上取决于它们的释放因素。 这些进步对于更好的理解和调节PD中的铁代谢紊乱可能是有价值的。

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