Garruto R M, Fukatsu R, Yanagihara R, Gajdusek D C, Hook G, Fiori C E
Proc Natl Acad Sci U S A. 1984 Mar;81(6):1875-9. doi: 10.1073/pnas.81.6.1875.
We report the distribution and imaging of calcium and aluminum in neurofibrillary tangle (NFT)-bearing neurons within Sommer's sector of the hippocampus in Guamanian patients with parkinsonism-dementia, using a method of computer-controlled electron beam x-ray micro-analysis and wavelength dispersive spectrometry. Calcium and aluminum were distributed in cell bodies and axonal processes of NFT-bearing neurons. The elemental images show that both calcium and aluminum deposits occur within the same NFT-bearing hippocampal neuron in this dementing disease, suggesting that these elements are involved in NFT formation. No prominent concentrations of calcium and aluminum were imaged in non-NFT-containing regions within the pyramidal cell layer of the parkinsonism-dementia cases or in the control cases. These findings support the hypothesis that secondary hyperparathyroidism resulting from low environmental calcium and magnesium in the high-incidence focus of amyotrophic lateral sclerosis and parkinsonism-dementia on Guam had led to abnormal deposition of calcium and aluminum in the central nervous system.
我们采用计算机控制电子束X射线微分析和波长色散光谱法,报告了关岛帕金森痴呆症患者海马体索默氏区中含神经原纤维缠结(NFT)神经元内钙和铝的分布及成像情况。钙和铝分布于含NFT神经元的细胞体和轴突中。元素图像显示,在这种痴呆疾病中,钙和铝沉积物出现在同一个含NFT的海马神经元内,这表明这些元素参与了NFT的形成。在帕金森痴呆症病例或对照病例的锥体细胞层中不含NFT的区域,未成像到钙和铝的显著聚集。这些发现支持了以下假说:在关岛肌萎缩侧索硬化症和帕金森痴呆症高发地区,由于环境中钙和镁含量低导致的继发性甲状旁腺功能亢进,致使钙和铝在中枢神经系统中异常沉积。