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捐赠给医学研究委员会认知功能和衰老研究的人脑组织中的铝、铁和铜。

Aluminium, iron and copper in human brain tissues donated to the Medical Research Council's Cognitive Function and Ageing Study.

机构信息

The Birchall Centre, Lennard-Jones Laboratories, Keele University, Stoke-on-Trent, Staffordshire, ST5 5BG, UK.

出版信息

Metallomics. 2012 Jan;4(1):56-65. doi: 10.1039/c1mt00139f. Epub 2011 Nov 1.

Abstract

Aluminium, iron and copper are all implicated in the aetiology of neurodegenerative diseases including Alzheimer's disease. However, there are very few large cohort studies of the content of these metals in aged human brains. We have used microwave digestion and TH GFAAS to measure aluminium, iron and copper in the temporal, frontal, occipital and parietal lobes of 60 brains donated to the Cognitive Function and Ageing Study. Every precaution was taken to reduce contamination of samples and acid digests to a minimum. Actual contamination was estimated by preparing a large number of (170+) method blanks which were interspersed within the full set of 700+ tissue digests. Subtraction of method blank values (MBV) from tissue digest values resulted in metal contents in all tissues in the range, MBV to 33 μg g(-1) dry wt. for aluminium, 112 to 8305 μg g(-1) dry wt. for iron and MBV to 384 μg g(-1) dry wt. for copper. While the median aluminium content for all tissues was 1.02 μg g(-1) dry wt. it was informative that 41 brains out of 60 included at least one tissue with an aluminium content which could be considered as potentially pathological (> 3.50 μg g(-1) dry wt.). The median content for iron was 286.16 μg g(-1) dry wt. and overall tissue iron contents were generally high which possibly reflected increased brain iron in ageing and in neurodegenerative disease. The median content for copper was 17.41 μg g(-1) dry wt. and overall tissue copper contents were lower than expected for aged brains but they were commensurate with aged brains showing signs of neurodegenerative disease. In this study we have shown, in particular, the value of carrying out significant numbers of method blanks to identify unknown sources of contamination. When these values are subtracted from tissue digest values the absolute metal contents could be considered as conservative and yet they may still reflect aspects of ageing and neurodegenerative disease in individual brains.

摘要

铝、铁和铜均与包括阿尔茨海默病在内的神经退行性疾病的病因有关。然而,针对这些金属在老年人大脑中含量的大型队列研究非常少。我们使用微波消解和 TH-GFAAS 测量了 60 例捐赠给认知功能与衰老研究的大脑的颞叶、额叶、枕叶和顶叶中的铝、铁和铜。我们采取了一切预防措施,将样本和酸消解的污染降至最低。通过制备大量(超过 170 个)方法空白样来估计实际污染,这些空白样穿插在 700 多个组织消解样中。将方法空白值(MBV)从组织消解值中减去,得到所有组织中的金属含量均在 MBV 到 33μg g(-1)干重之间,范围为铝;MBV 到 8305μg g(-1)干重之间,范围为铁;以及 MBV 到 384μg g(-1)干重之间,范围为铜。虽然所有组织的中位数铝含量为 1.02μg g(-1)干重,但值得注意的是,60 个大脑中有 41 个至少有一个组织的铝含量可被认为具有潜在病理学意义(>3.50μg g(-1)干重)。铁的中位数含量为 286.16μg g(-1)干重,总体组织铁含量通常较高,这可能反映了衰老和神经退行性疾病中脑铁的增加。铜的中位数含量为 17.41μg g(-1)干重,总体组织铜含量低于预期的老年大脑,但与表现出神经退行性疾病迹象的老年大脑相当。在这项研究中,我们特别展示了进行大量方法空白样以识别未知污染源的价值。当这些值从组织消解值中减去时,绝对金属含量可以被认为是保守的,但它们仍然可能反映个别大脑衰老和神经退行性疾病的某些方面。

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