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帕金森病患者大脑黑质中的铁-黑色素复合物:X射线微分析

Iron-melanin complex in substantia nigra of parkinsonian brains: an x-ray microanalysis.

作者信息

Jellinger K, Kienzl E, Rumpelmair G, Riederer P, Stachelberger H, Ben-Shachar D, Youdim M B

机构信息

Ludwig Boltzmann Institute of Clinical Neurobiology, Lainz-Hospital, Vienna, Austria.

出版信息

J Neurochem. 1992 Sep;59(3):1168-71. doi: 10.1111/j.1471-4159.1992.tb08362.x.

Abstract

Using energy-dispersive x-ray analysis on an electron microscope working in the scanning transmission electron microscopy mode equipped with a microanalysis system, we studied the subcellular distribution of trace elements in neuromelanin-containing neurons of the substantia nigra zona compacta (SNZC) of three cases of idiopathic Parkinson's disease (PD) [one with Alzheimer's disease (AD)] and of three controls, in Lewy bodies of SNZC, and in synthetic dopamine-melanin chemically charged or uncharged with Fe. Weak but significant Fe peaks similar to those of a synthetic melanin-Fe3+ complex were seen only in intraneuronal highly electron-dense neuromelanin granules of SNZC cells of PD brains, with the highest levels in a case of PD plus AD, whereas a synthetic melanin-Fe2+ complex showed much lower iron peaks, indicating that neuromelanin has higher affinity for Fe3+ than for Fe2+. No detectable Fe was seen in nonmelanized cytoplasm of SNZC neurons and in the adjacent neuropil in both PD and controls, in Lewy bodies in SNZC neurons in PD, and in synthetic dopamine-melanin uncharged with iron. These findings, demonstrating for the first time a neuromelanin-iron complex in dopaminergic SNZC neurons in PD, support the assumption that an iron-melanin interaction contributes significantly to dopaminergic neurodegeneration in PD and PD plus AD.

摘要

我们使用配备了微量分析系统、工作在扫描透射电子显微镜模式下的电子显微镜进行能量色散X射线分析,研究了3例特发性帕金森病(PD)[其中1例合并阿尔茨海默病(AD)]和3例对照的黑质致密部(SNZC)含神经黑色素神经元中微量元素的亚细胞分布,以及SNZC中的路易小体和化学负载或未负载铁的合成多巴胺黑色素中的微量元素分布。仅在PD脑SNZC细胞的神经元内高电子密度神经黑色素颗粒中观察到与合成黑色素 - Fe3 + 复合物相似的微弱但显著的铁峰,在1例PD合并AD的病例中水平最高,而合成黑色素 - Fe2 + 复合物的铁峰则低得多,这表明神经黑色素对Fe3 + 的亲和力高于对Fe2 + 的亲和力。在PD和对照中,SNZC神经元的非黑色素化细胞质以及相邻神经纤维网中、PD的SNZC神经元中的路易小体以及未负载铁的合成多巴胺黑色素中均未检测到铁。这些发现首次证明了PD中多巴胺能SNZC神经元中的神经黑色素 - 铁复合物,支持了铁 - 黑色素相互作用对PD和PD合并AD中的多巴胺能神经变性有显著贡献的假设。

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