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基于 LC-MS 的生物分析中分析物和内标交叉信号贡献及其对定量的影响。

Analyte and internal standard cross signal contributions and their impact on quantitation in LC-MS based bioanalysis.

机构信息

PharmaNet Canada, Québec, QC, Canada.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2011 Jul 1;879(21):1954-60. doi: 10.1016/j.jchromb.2011.05.027. Epub 2011 May 27.

Abstract

Cross signal contributions between an analyte and its internal standard (IS) are very common due to impurities in reference standards and/or isotopic interferences. Despite the general awareness of this issue, how exactly they affect quantitation in LC-MS based bioanalysis has not been systematically evaluated. In this research, such evaluations were performed first by simulations and then by experiments using a typical bioanalytical method for tiagabine over the concentration range of 1-1000 ng/mL in human EDTA K(3) plasma. The results demonstrate that when an analyte contributes to IS signal, linearity and accuracy can be affected with low IS concentration. Thus, minimum IS concentrations have been obtained for different combinations of concentration range, percentage of cross contribution, and weighting factor. Moreover, while impurity in analyte reference standard is a factor in cross signal contribution, significant systematic errors could exist in the results of unknown samples even though the results of calibration standards and quality controls are acceptable. How these systematic errors would affect stability evaluation, method transfer, and cross validation has also been discussed and measures to reduce their impact are proposed. On the other hand, the signal contribution from an IS to the analyte causes shifting of a calibration curve, i.e. increase of intercept, and theoretically, the accuracy is not affected. The simulation results are well supported by experimental results. For example, good inter-run (between-run) accuracy (bias: -2.70 to 5.35%) and precision (CV: 2.07-10.50%) were obtained when runs were extracted with an IS solution containing 1-fold of the lower limit of quantitation.

摘要

由于参考标准品中的杂质和/或同位素干扰,分析物与其内标(IS)之间的交叉信号贡献非常常见。尽管人们普遍意识到这个问题,但它们究竟如何影响基于 LC-MS 的生物分析中的定量,尚未得到系统评估。在这项研究中,首先通过模拟,然后使用典型的替加滨生物分析方法,在人 EDTA K3血浆中浓度范围为 1-1000ng/mL 的情况下,对其进行了评估。结果表明,当分析物对 IS 信号有贡献时,低 IS 浓度会影响线性和准确性。因此,对于不同浓度范围、交叉贡献百分比和加权因子的组合,获得了最小的 IS 浓度。此外,尽管校准标准品和质控品的结果可以接受,但分析物参考标准品中的杂质也是交叉信号贡献的一个因素,即使未知样品的结果也可能存在显著的系统误差。还讨论了这些系统误差如何影响稳定性评估、方法转移和交叉验证,以及提出了减少其影响的措施。另一方面,IS 对分析物的信号贡献会导致校准曲线的偏移,即截距增加,从理论上讲,准确性不受影响。模拟结果得到了实验结果的很好支持。例如,当使用包含定量下限 1 倍的 IS 溶液提取运行时,获得了良好的批内(批间)准确性(偏差:-2.70%至 5.35%)和精密度(CV:2.07%-10.50%)。

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