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微波消解-电感耦合等离子体质谱法测定动物血清、组织和器官中的微量元素银

[Determination of trace element silver in animal serum, tissues and organs by microwave digestion-ICP-MS].

作者信息

Yuan Jun-Jie, Xie You-Zhuan, Han Chen, Sun Wei, Zhang Kai, Zhao Jie, Lu Xiao, Lu Jian-Xi, Ren Wei

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2014 Sep;34(9):2533-7.

Abstract

Nowadays, the silver is widely used in the biological field and its biological safety catches great attention. It is important to know the distribution of silver ions within the biological organism and the toxic threshold concentration in the tissue. Therefore, a highly sensitive method for measurement of trace amount of silver ion in the medical biological samples is needed. With its high sensitivity for detection of metal ions, inductively coupled plasma mass spectrometry (ICP-MS) method is well suited for quantification of trace amount of silver ion in such samples, but method development is still in its infancy. Consequently, a simple and convenient method for determination of trace amount of silver in the animal serum, tissues or organs was developed, in which the samples were subjected to the microwave digestion, followed by the ICP-MS analysis. To begin with, the samples of serum, muscle, bone marrow, bone, heart, liver, spleen, and kidney were sequently processed in 5 mL of HNO3 and 2 mL of H2O2 solution. Then the samples were completely digested by microwave with the power of 2 000 watts. The temperature was raised gradually by 3-step program. Moreover, the data achieved were reproducible and the method was time saving and especially for large amounts of sample processing. Then the digested solutions were diluted to constant volume. Finally, the concentration of 107Ag in the samples was analyzed by the method of ICP-MS under the optimized conditions. Element yttrium (Y) was used as the internal standard to compensate for matrix suppression effect and improve the accuracy of measurement. For one thing, the analytical results showed that the detection limit of the trace element 107Ag was 0.98 μg · kg(-1), and furthermore, the correlation coefficient of standard curve was 0.999 9. For another thing, the recovery rate of the silver element ranged from 98% to 107%, which was calculated according to measured quantity before adding standard, adding standard and measured quantity after adding standard. At the same time, the relative standard deviation (RSD) of the method was in the range of 2.0%-4.3%. The concentrations of element silver in animal serum, tissues and organs were determined by the aboved method. The obtained results showed that silver ions were mainly accumulated in the liver after they were intaken into the body. The results suggested that the microwave digestion-ICP-MS method could accurately determine the trace element Ag in the body. The method developed has good feasibility and is suitable for the determination of trace element Ag in various types of medical and biological samples, especially for large quantities of biological samples. The process has the advantages of easysample processing and it is simple and convenient. In addition, the accurate results could be obtained in a short time with high sensitivity. Last but not least, the method provides the guidance for the determination of trace elements in other biological samples.

摘要

如今,银在生物领域被广泛应用,其生物安全性备受关注。了解银离子在生物体内的分布以及组织中的毒性阈值浓度非常重要。因此,需要一种高灵敏度的方法来测定医用生物样品中的痕量银离子。电感耦合等离子体质谱(ICP-MS)法对金属离子具有高灵敏度,非常适合定量此类样品中的痕量银离子,但方法开发仍处于起步阶段。因此,开发了一种简单便捷的方法来测定动物血清、组织或器官中的痕量银,该方法是先对样品进行微波消解,然后进行ICP-MS分析。首先,将血清、肌肉、骨髓、骨骼、心脏、肝脏、脾脏和肾脏的样品依次在5 mL硝酸和2 mL过氧化氢溶液中处理。然后将样品在2000瓦功率下通过微波完全消解。温度通过三步程序逐渐升高。此外,获得的数据具有可重复性,该方法节省时间,尤其适用于大量样品处理。然后将消解后的溶液稀释至恒定体积。最后,在优化条件下通过ICP-MS法分析样品中¹⁰⁷Ag的浓度。使用元素钇(Y)作为内标来补偿基体抑制效应并提高测量准确性。一方面,分析结果表明痕量元素¹⁰⁷Ag的检测限为0.98 μg·kg⁻¹,此外,标准曲线的相关系数为0.9999。另一方面,银元素的回收率在98%至107%之间,这是根据加标前测量量、加标量和加标后测量量计算得出的。同时,该方法的相对标准偏差(RSD)在2.0%至4.3%范围内。采用上述方法测定了动物血清、组织和器官中银元素的浓度。所得结果表明,银离子摄入体内后主要蓄积在肝脏中。结果表明,微波消解-ICP-MS法可准确测定体内痕量元素银。所开发的方法具有良好的可行性,适用于各类医用和生物样品中痕量元素银的测定,尤其适用于大量生物样品。该过程具有样品处理简便的优点,操作简单方便。此外,能在短时间内获得准确结果,灵敏度高。最后但同样重要的是,该方法为其他生物样品中痕量元素的测定提供了指导。

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