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首页> 外文期刊>Journal of trace elements in medicine and biology: Organ of the Society for Minerals and Trace Elements (GMS) >Manganese species from human serum, cerebrospinal fluid analyzed by size exclusion chromatography-, capillary electrophoresis coupled to inductively coupled plasma mass spectrometry.
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Manganese species from human serum, cerebrospinal fluid analyzed by size exclusion chromatography-, capillary electrophoresis coupled to inductively coupled plasma mass spectrometry.

机译:来自人类血清,脑脊髓液中的锰物种,通过尺寸排阻色谱法进行分析,毛细管电泳与电感耦合等离子体质谱联用。

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Manganese (Mn) at high concentrations can have adverse effects on health, mainly because of its toxicity to the central nervous system. Health impacts of Mn are known mostly from occupational health studies, but the exact mechanisms how Mn, being bound to transferrin (TF) in the blood, enters the brain--are unknown. Mn speciation at the neural barriers can help to obtain more information about the pathways and carriers. This paper summarizes investigations on the size distribution of Mn carriers (e.g. proteins, peptides, carbonic acids) in serum before the neural barriers and in cerebrospinal fluid (CSF) behind them as a first characterization step of the Mn carriers being involved in moving Mn across the neural barriers. Further identification of Mn-species in CSF was successfully achieved by CZE-inductively coupled plasma (ICP)-dynamic reaction cell (DRC)-mass spectrometry (MS). Serum samples showed Mn mean concentrations of 1.7+/-0.8 microg L(-1). The size distribution of Mn-carriers showed a main peak in the TF/albumin size fitting to the known physiological ligands. However, also an increasing Mn peak at 700 Da with increasing total Mn concentration was seen. Samples of CSF showed Mn mean concentrations of 2.6 microg L(-1)=48 nM. In CSF Mn was found to be mostly bound to low-molecular-mass (LMM)-Mn carriers in the range of 640-680 Da. This is similar to the LMM compound in serum and to Mn-citrate complexes suggested to be present in body fluids. Citrate concentration was 573 microM, thus being in huge excess compared to Mn. CSF was further analyzed by CZE-ICP-DRC-MS. Several Mn-species were monitored and mostly identified. The most abundant Mn-species was Mn-citrate at a concentration of around 0.7 microg Mn L(-1).
机译:高浓度的锰会对健康产生不利影响,主要是因为它对中枢神经系统具有毒性。锰对健康的影响主要来自职业健康研究,但是与血液中转铁蛋白(TF)结合的锰进入大脑的确切机制尚不清楚。神经屏障处的锰形态可帮助获得有关途径和载体的更多信息。本文概述了关于神经屏障之前的血清中以及其后的脑脊髓液(CSF)中的Mn载体(例如蛋白质,肽,碳酸)的大小分布的研究,这是Mn载体参与跨Mn移动的第一步表征步骤。神经障碍。通过CZE-电感耦合等离子体(ICP)-动态反应池(DRC)-质谱(MS)成功地实现了CSF中Mn物种的进一步鉴定。血清样品显示Mn平均浓度为1.7 +/- 0.8 microg L(-1)。 Mn载体的尺寸分布在TF /白蛋白尺寸中显示了一个与已知生理配体相符的主峰。但是,随着总Mn浓度的增加,在700 Da处的Mn峰也增加。 CSF样品显示Mn平均浓度为2.6微克L(-1)= 48 nM。在脑脊液中,发现锰主要结合在640-680 Da范围内的低分子(LMM)-Mn载体上。这类似于血清中的LMM化合物以及体液中存在的柠檬酸锰复合物。柠檬酸盐浓度为573 microM,因此与Mn相比大大过量。通过CZE-ICP-DRC-MS进一步分析CSF。对几种锰物种进行了监测,并得到了大部分鉴定。锰种类最多的是柠檬酸锰,浓度约为0.7微克Mn L(-1)。

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