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首页> 外文期刊>Analytica chimica acta >Size characterization of manganese species from liver extracts using size exclusion chromatography inductively coupled plasma mass spectrometry
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Size characterization of manganese species from liver extracts using size exclusion chromatography inductively coupled plasma mass spectrometry

机译:尺寸排阻色谱-电感耦合等离子体质谱法表征肝脏提取物中锰的尺寸

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摘要

Increased Mn levels are known to damage the central nervous system,resulting in motoric abnormalities and psychic disorder and finally resulting even in symptoms similar to Parkinson's disease.Monomethyl-Mn-pentadienyl-tricarbonyl is used as anti-knock agent and consequently Mn compounds are exhausted into air from automobiles.With additional inhalative Mn exposure,finally an Mn overflow of the liver is known,resulting in increased Mn transport to other organs,predominantly to the brain.Specific Mn-species then seem to be generated in liver,however,their speciation is still not investigated.This paper focuses on experiments to get more information on Mn species with respect to a size characterization of the Mn species in liver.Liver extracts were analyzed using a mass calibrated size exclusion chromatography(SEC)column being coupled to inductively coupled plasma mass spectrometry(ICP-MS)detection.As an important prerequisite,the stability of Mn species in the liver extracts during storage was investigated as well.It turned out that short term storage of the extract(under Ar atmosphere)at 4 deg C seems to be best suited.Storage for several days even at -20 deg C demonstrated already considerable changes in species pattern.Further investigations focused on improvements in detection during hyphenation using dynamic reaction cell(DRC)technology for Mn detection.The signal to noise(S/N)ratio was increased up to a factor of 15 when using DRC technology compared to conventional ICP-MS without DRC.The analysis of liver extracts with a mass calibrated SEC column coupled to inductively coupled plasma-dynamic reaction cell-mass spectrometry(ICP-DRC-MS)showed Mn associated to ca.36% to a peak covering a mass range 100-260 kDa,approximately 9% was found in a peak having the mass range 37-77 kDa,46% in a peak having the mass range 13-36 kDa and ca.7% in the low molecular mass(LMM)range.
机译:锰水平升高会损害中枢神经系统,导致运动异常和精神障碍,甚至导致类似于帕金森氏病的症状。单甲基-锰-戊二烯基-三羰基被用作抗爆剂,因此锰化合物被耗尽通过吸入更多的锰,最终会导致肝脏中锰的溢出,从而导致锰向其他器官(主要是大脑)的转运增加。然后,特定的锰物种似乎在肝脏中产生,但是物种形态尚未得到研究。本文着重于实验,以就肝脏中锰物种的大小表征获得更多有关锰物种的信息。肝脏提取物的分析采用质量校准尺寸排阻色谱(SEC)色谱柱-电感耦合。耦合等离子体质谱(ICP-MS)检测。作为一个重要的前提,在储存期间肝脏提取物中的锰物种稳定事实证明,提取物(在Ar气氛下)在4°C下短期保存似乎是最合适的方法,即使在-20°C下保存几天也表明物种形态已经发生了很大变化。研究的重点是使用动态反应池(DRC)技术检测锰时在断字时的检测改进。与不使用DRC的常规ICP-MS相比,使用DRC技术时的信噪比(S / N)提高到15倍用质量校准的SEC色谱柱与电感耦合等离子体动力学反应池质谱(ICP-DRC-MS)联用对肝脏提取物进行分析,结果表明Mn约占36%的峰覆盖了100-260 kDa的质量范围,在质量范围为37-77 kDa的峰中发现约9%,在质量范围为13-36 kDa的峰中发现为46%,在低分子量(LMM)范围中为约7%。

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