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Pattern of Altered Plasma Elemental Phosphorus Calcium Zinc and Iron in Alzheimer’s Disease

机译:阿尔茨海默氏病中血浆元素磷钙锌和铁的变化模式

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摘要

Metal/mineral dyshomeostasis has been implicated in the development of Alzheimer’s disease (AD). The aim of the study was to investigate the difference in absolute and percentage levels of plasma phosphorus, calcium, iron, zinc, copper, selenium in cognitively normal (CN) and AD subjects. Total reflection X-ray fluorescence (TXRF) spectroscopy was used to detect plasma metals/minerals in CN and AD subjects (n = 44 per group). TXRF detected significantly increased plasma levels of phosphorus (p = 1.33 × 10−12) and calcium (p = 0.025) in AD compared to CN subjects, with higher phosphorus/calcium (p = 2.55 × 10−14) ratio in the former. Percentage concentrations calculated for phosphorus, calcium, iron, zinc, copper, selenium by dividing the concentration of each element by the total concentration of these elements and multiplying by 100%, demonstrated phosphorus was higher in AD compared to CN subjects, while calcium, iron, zinc, copper and selenium were lower in AD subjects, with area under the curves as high as 0.937 (p = 6 × 10−5) computed from receiver operating curves. With exclusion of high levels of phosphorus and calcium from percentage calculations, iron levels remained low in AD whereas zinc was higher in AD, and copper and selenium levels were similar. We demonstrate altered distribution of elements in the plasma of AD subjects with high interdependencies between elemental levels and propose the potential of TXRF measurements for disease monitoring.
机译:金属/矿物质的动态平衡与阿尔茨海默氏病(AD)的发展有关。这项研究的目的是调查认知正常(CN)和AD受试者血浆磷,钙,铁,锌,铜,硒的绝对含量和百分比水平的差异。全反射X射线荧光(TXRF)光谱用于检测CN和AD受试者中的血浆金属/矿物质(每组n = 44)。与CN受试者相比,TXRF检测到AD的血浆中磷(p = 1.33×10 -12 )和钙(p = 0.025)的血浆水平显着增加,而磷/钙含量较高(p = 2.55×10 -12 sup> −14 )的比例。通过将每种元素的浓度除以这些元素的总浓度并乘以100%计算得出的磷,钙,铁,锌,铜,硒的百分比浓度,表明AD的磷水平高于CN人群,而钙,铁水平较高根据接受者工作曲线计算,AD受试者的锌,铜,硒含量较低,曲线下面积最高为0.937(p = 6×10 -5 )。从百分比计算中排除高水平的磷和钙后,AD中的铁含量仍然较低,而AD中的锌含量较高,而铜和硒的含量相似。我们证明元素对象之间的高度相关性,改变了AD受试者血浆中元素的分布,并提出了TXRF测量用于疾病监测的潜力。

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