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采用 UPLC-MS/MS 定量检测人痰中白三烯 B(4)作为生物标志物。

Quantitation of leukotriene B(4) in human sputum as a biomarker using UPLC-MS/MS.

机构信息

Drug Safety Sciences, Janssen Research & Development, Johnson & Johnson, Raritan, NJ 08869, USA.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2013 Aug 1;932:59-65. doi: 10.1016/j.jchromb.2013.06.010. Epub 2013 Jun 20.

Abstract

Leukotriene B4 (LTB4) is a potent mediator of inflammation and has been recognized as an important target for therapeutic intervention for treatment of diseases such as asthma. In the current work, a highly selective and sensitive UPLC-MS/MS assay was developed for quantitation of LTB4 in human sputum as a biomarker for LTB4 biosynthesis inhibition. A fit-for-purpose strategy for method development, assay qualification, and study support was adopted for this biomarker project. A surrogate matrix (protein buffer) was used for preparation of calibration samples and certain levels of quality control (QC) samples to avoid interference from endogenous analyte, while the low QC was prepared in authentic matrix, human sputum. The analytical methodology utilized a liquid-liquid extraction procedure in 96-well plate format. Chromatographic separation was achieved with a reversed-phase ultra high pressure liquid chromatography (UPLC) column using gradient elution, and the run time was 4.5min per sample. The lower limit of quantitation (LLOQ) was 0.2ng/mL, and the calibration curve range was 0.2-20ng/mL. Acceptable accuracy, precision, linearity, specificity, recovery, and matrix effect was obtained. Bench-top stability (6h), freeze-thaw stability (3 cycles at -20°C), and autosampler stability (97h at ambient temperature) all met acceptance criteria. Frozen long-term stability for 166 days at -20°C in sputum did not meet acceptance criteria by showing only ≥75% of nominal concentration and the information was taken into consideration for study support. Two important observations in the current work were: (1) LTB4 was unstable in sputum in the presence of liquification reagent dithiothreitol (DTT). Therefore, a non-DTT treatment method for sputum processing was developed and applied to the bioanalytical assay and clinical study support; and (2) chromatographic separation of LTB4 from its three non-enzymatically derived isomers, i.e. 6-trans-LTB4, 12-epi-LTB4, and 6-trans-12-epi-LTB4, was achieved. This assay was successfully applied to a Phase II clinical study for proof-of-concept of a LTA4 hydrolase inhibitor for treatment of asthma.

摘要

白三烯 B4(LTB4)是一种有效的炎症介质,已被认为是治疗哮喘等疾病的治疗干预的重要靶点。在目前的工作中,开发了一种高度选择性和灵敏的 UPLC-MS/MS 测定法,用于定量人痰中的 LTB4,作为 LTB4 生物合成抑制的生物标志物。采用了一种适合目的的方法开发、测定法资格认证和研究支持策略,用于该生物标志物项目。使用替代基质(蛋白质缓冲液)来制备校准样品和某些级别的质控(QC)样品,以避免内源性分析物的干扰,而低 QC 则在真实基质(人痰)中制备。分析方法采用 96 孔板格式的液 - 液萃取程序。使用反相超高压液相色谱(UPLC)柱进行色谱分离,采用梯度洗脱,每个样品的运行时间为 4.5 分钟。定量下限(LLOQ)为 0.2ng/mL,校准曲线范围为 0.2-20ng/mL。获得了可接受的准确性、精密度、线性、特异性、回收率和基质效应。台式稳定性(6h)、冻融稳定性(在-20°C 下 3 个循环)和自动进样器稳定性(在环境温度下 97h)均符合验收标准。在-20°C 下储存 166 天的痰样的长期冷冻稳定性不符合验收标准,仅显示出≥75%的标称浓度,研究支持考虑了这一信息。目前工作中的两个重要观察结果是:(1)LTB4 在存在二硫苏糖醇(DTT)的液化试剂时在痰中不稳定。因此,开发了一种非 DTT 处理方法用于痰处理,并应用于生物分析测定法和临床研究支持;(2)LTB4 与其三种非酶衍生的异构体,即 6-反式-LTB4、12-表-LTB4 和 6-反式-12-表-LTB4,实现了色谱分离。该测定法成功应用于 II 期临床试验,以证明 LTA4 水解酶抑制剂治疗哮喘的概念验证。

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