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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Development and validation of an LC-MS/MS based method for quantification of 25 hydroxyvitamin D2 and 25 hydroxyvitamin D3 in human serum and plasma
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Development and validation of an LC-MS/MS based method for quantification of 25 hydroxyvitamin D2 and 25 hydroxyvitamin D3 in human serum and plasma

机译:开发和验证基于LC-MS / MS的人血清和血浆中25羟基维生素D2和25羟基维生素D3定量方法

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摘要

Vitamin D deficiency is increasing in the general population and has become a serious public health risk globally. As a reliable clinical indicator of vitamin status, 25 hydroxyvitamin D (25(OH)D) has been measured by various methods. However, the accuracy of these measurements has been the subject of considerable debate. Here, we report the development and validation of a liquid chromatography-triple quadrupole mass spectrometry based method for the quantification of 25(OH)D2 and 25(OH)D3 in human serum and plasma samples. Samples were first processed by protein precipitation to release the analytes from the vitamin D binding protein (DBP), followed by a liquid-liquid extraction procedure. Analysis was performed on an LC-MS/MS system which utilized an AB Sciex API 3000 mass spectrometer. A six point calibration curve ranging from 2.5 to 100 ng/mL was established for both 25(OH)D2 and 25(OH)D3. A complete method validation was conducted, including intra- and inter-assay accuracy and precision, LLOQ, dilution QC, specificity, recovery, matrix effect, and a thorough stability profile of stock solutions and QC samples. Matching samples of serum and plasma (containing either heparin or EDTA anticoagulant) generated from the same blood samples were tested, and no significant differences in 25(OH)D2 and 25(OH)D3 concentrations were found in these sample matrices. In method comparison, we analyzed 10 serum samples obtained from the Vitamin D External Quality Assessment Scheme (DEQAS), and the total 25(OH)D concentrations measured by our method were very close to the LC-MS/MS Method Mean values provided by DEQAS (average 0.17% bias, R~2 = 0.99). However, comparison with the DiaSorin Liaison 25(OH)D TOTAL Assay demonstrated limited correlation between these two methods (R~2 = 0.54). In general, concentrations measured by our LC-MS/MS method were roughly 9% higher than those measured by the DiaSorin Liaison assay. The correlation with DiaSorin Liaison measurement was better for samples in the lower concentration range. In summary, we developed and validated an LC-MS/MS based method that can be reliably applied in routine quantification of 25(OH)D2 and 25(OH)D3 in human serum and plasma samples. This method is not suitable for pediatric determinations due to the potential interference of 3-epi 25(OH)D3.
机译:维生素D缺乏症在普通人群中正在增加,并且已成为全球范围内严重的公共健康风险。作为维生素状态的可靠临床指标,已经通过各种方法测量了25羟基维生素D(25(OH)D)。但是,这些测量的准确性一直是争论的主题。在这里,我们报告开发和验证的液相色谱-三重四极杆质谱为基础的方法,用于定量测定人血清和血浆样品中的25(OH)D2和25(OH)D3。首先通过蛋白质沉淀处理样品,以从维生素D结合蛋白(DBP)释放分析物,然后进行液-液萃取程序。在使用AB Sciex API 3000质谱仪的LC-MS / MS系统上进行分析。对于25(OH)D2和25(OH)D3均建立了2.5至100 ng / mL范围的六点校准曲线。进行了完整的方法验证,包括测定内和测定间准确性和精密度,LLOQ,稀释QC,特异性,回收率,基质效应以及储备溶液和QC样品的彻底稳定性。测试了从相同血液样本中产生的血清和血浆的匹配样本(包含肝素或EDTA抗凝剂),在这些样本基质中未发现25(OH)D2和25(OH)D3浓度的显着差异。在方法比较中,我们分析了从维生素D外部质量评估计划(DEQAS)获得的10个血清样品,通过我们的方法测得的总25(OH)D浓度非常接近LC-MS / MS方法的平均值。 DEQAS(平均0.17%偏差,R〜2 = 0.99)。但是,与DiaSorin联络25(OH)D TOTAL分析相比,这两种方法之间的相关性有限(R〜2 = 0.54)。通常,通过我们的LC-MS / MS方法测得的浓度比通过DiaSorin联络测定法测得的浓度高大约9%。在较低浓度范围内,与DiaSorin联络测量的相关性更好。总而言之,我们开发并验证了一种基于LC-MS / MS的方法,该方法可以可靠地应用于人血清和血浆样品中25(OH)D2和25(OH)D3的常规定量分析。由于3-epi 25(OH)D3的潜在干扰,该方法不适用于儿科测定。

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