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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) >A method for low volume and low Se concentration samples and application to paired cerebrospinal fluid and serum samples.
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A method for low volume and low Se concentration samples and application to paired cerebrospinal fluid and serum samples.

机译:一种低体积和低硒浓度样品的方法,并应用于成对的脑脊液和血清样品。

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摘要

The well-known beneficial health effects of Se have demanded the development of rapid and accurate methods for its analysis. A flow injection (FI) method with inductively coupled plasma mass spectrometry (ICP-MS) as a selenium-selective detector was optimized. Flow injection was carried out using a Knauer 1100 smartline inert series liquid chromatograph coupled with a Perkin Elmer DRC II ICP-mass spectrometer. For sample injection a Perkin Elmer electronic valve equipped with a 25microL sample loop was employed. Before measurement, standards or samples were administered with 1microg/L rhodium as internal standard for correction of changes in detector response according to changes in sample electrolyte concentration. The method characterization parameters are: LOD (3sigma criterion): 26ng/L, LOQ (10sigma criterion): 86ng/L, linearity: 0.05->10microg/L, r(2)=0.9999, serial or day-to-day precision at 2microg/L: 4.48% or 5.6%. Accuracy was determined by (a) recovery experiments (CSF spiked with 2microg/L Se); (b) comparison of FI-ICP-MS measurement with graphite furnace atomic absorption (GFAAS) measurements of 1:10 diluted serum samples; (c) Se determination in urine and serum control materials. Recovery (a) was 101.4%, measurement comparison with GFAAS (b) showed 98.8% (5 serum samples, 1:10 diluted in the range of 0.5-1.3microg/L, compared to GFAAS determination, which was set to 100%), and accuracy was 96.8% or 105.6% for the serum or urine control material. Analysis time per sample was short and typically below 2min for the complete measurement, including sample introduction, sample-line purge and quadruplicate Se determination. This method was used to determine Se in cerebrospinal fluid (CSF) and plasma (here parallel to GFAAS) in 35 paired serum and CSF samples. Se determination gave values in the range of 42-130microg/L for serum and 1.63-6.66microg/L for CSF. The median for Se in 35 individual CSF samples was 3.28microg/L, the mean (+/-SD) was 3.67 (1.35)microg/L, whilst for individual serum samples the median was 81microg/L and the mean (+/-SD) was 85 (26)microg/L. When relating the paired Se concentrations of CSF samples to respective serum samples it turned out that Se-CSF (behind blood brain barrier (BBB)) is independent on Se-serum concentration (before BBB).
机译:硒的众所周知的有益健康作用要求开发一种快速,准确的分析方法。优化了以电感耦合等离子体质谱法(ICP-MS)作为硒选择性检测器的流动注射(FI)方法。使用Knauer 1100 smartline惰性系列液相色谱仪和Perkin Elmer DRC II ICP-质谱仪联用进行流动注射。对于样品进样,使用配备了25microL样品定量环的Perkin Elmer电子阀。在测量之前,向标准品或样品中添加1microg / L铑作为内标,以根据样品电解质浓度的变化校正检测器响应的变化。方法表征参数为:LOD(3sigma标准):26ng / L,LOQ(10sigma标准):86ng / L,线性:0.05-> 10microg / L,r(2)= 0.9999,连续或日常精度2微克/升时:4.48%或5.6%。准确性是通过(a)回收率实验(掺有2microg / L Se的CSF)确定的; (b)将FI-ICP-MS测定与石墨炉原子吸收(GFAAS)测定的1:10稀释血清样品进行比较; (c)测定尿液和血清控制材料中的硒。回收率(a)为101.4%,与GFAAS(b)的测量比较显示98.8%(5个血清样品,在0.5-1.3microg / L范围内以1:10稀释,与GFAAS测定相比,设置为100%) ,血清或尿液对照材料的准确度为96.8%或105.6%。每个样品的分析时间很短,通常不足2分钟即可完成完整的测量,包括样品引入,样品线吹扫和四次Se测定。该方法用于测定35对配对的血清和CSF样品中脑脊液(CSF)和血浆(此处与GFAAS平行)中的Se。硒的测定值在血清中为42-130microg / L,在脑脊液中为1.63-6.66microg / L。 35个单独的CSF样品中硒的中位数为3.28microg / L,平均值(+/- SD)为3.67(1.35)microg / L,而个别血清样品的中位数为81microg / L,平均值(+/- SD)为85(26)microg / L。当将成对的CSF样品的Se浓度与相应的血清样品相关时,发现Se-CSF(血脑屏障后(BBB))与Se血清浓度(在BBB之前)无关。

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