Development, validation and application of a UPLC-MS/MS method for simultaneous quantification of OPC-61815 and its metabolites tolvaptan, DM-4103 and DM-4107 in human plasma

IF 2.8 3区 医学 Q2 BIOCHEMICAL RESEARCH METHODS Journal of Chromatography B Pub Date : 2024-06-19 DOI:10.1016/j.jchromb.2024.124213
Yufang Ma, Mengyang Yu, Hongyun Wang
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Abstract

OPC-61815 is an intravenous formulation vasopressin antagonist designed to treat heart failure patients, especially who have difficulty in oral intake. Tolvaptan together with DM-4103 and DM-4107 are considered as the major metabolites of OPC-61815 biotransformed in the liver via cytochrome P450 (CYP) 3A. An efficient and robust ultra-performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS) method for quantification of OPC-61815 and its three metabolites in human plasma was developed and fully validated. To our best knowledge, it was the first published method that simultaneously quantified all of these four analytes in only one run. Simple and rapid sample preparation procedure and very short UPLC-MS/MS run time (3.5 min) offered OPC-61815 and its metabolites relatively high throughput detection, which was greatly beneficial to further clinical bio-sample analysis. The method showed good linearity and sufficient sensitivity in the range of 2.00–1000 ng/mL with a low limit of quantitation (2.00 ng/mL) for each analyte. For samples with concentrations above 1000 ng/mL, 100-fold dilution with blank plasma before sample preparation was accepted. High precision and accuracy, high selectivity and satisfactory recovery of this method were demonstrated. For all of the four analytes, no significant matrix effect or carry-over was observed. The stability of analytes and internal standards under different conditions were evaluated to ensure they were stable during the whole period of storage, preparation and detection. Also, re-injection reproducibility was investigated. In addition, the conversion test showed that almost no OPC-61815 converted into DM-4103 and DM-4107 during sample processing, while attention should be paid to the concentration difference between OPC-61815 and tolvaptan in bioanalysis. The developed UPLC-MS/MS method was successfully applied to an open, single and multiple dose administration phase I trial for monitoring the pharmacokinetics of OPC-61815. This work provided a promising way for further pharmacokinetic study of OPC-61815.

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开发、验证和应用UPLC-MS/MS方法同时定量检测人血浆中的OPC-61815及其代谢物托伐普坦、DM-4103和DM-4107。
OPC-61815 是一种静脉注射剂型的血管加压素拮抗剂,旨在治疗心力衰竭患者,尤其是难以口服的患者。托伐普坦与 DM-4103 和 DM-4107 被认为是 OPC-61815 在肝脏通过细胞色素 P450 (CYP) 3A 进行生物转化的主要代谢物。我们开发了一种高效、稳健的超高效液相色谱-串联质谱(UPLC-MS/MS)方法,用于定量检测人血浆中的OPC-61815及其三种代谢物。据我们所知,这是首个发表的只需一次运行即可同时定量这四种分析物的方法。简单快速的样品制备过程和极短的UPLC-MS/MS运行时间(3.5分钟)为OPC-61815及其代谢物的检测提供了相对较高的通量,这对进一步的临床生物样品分析大有裨益。该方法在 2.00-1000 纳克/毫升范围内具有良好的线性和足够的灵敏度,每种分析物的定量限(2.00 纳克/毫升)较低。对于浓度超过 1000 ng/mL 的样品,可在样品制备前用空白血浆稀释 100 倍。该方法精确度和准确度高,选择性强,回收率令人满意。对于所有四种分析物,均未观察到明显的基质效应或携带现象。对分析物和内标物在不同条件下的稳定性进行了评估,以确保它们在整个储存、制备和检测期间的稳定性。此外,还考察了再次进样的重现性。此外,转化试验表明,在样品处理过程中几乎没有 OPC-61815 转化为 DM-4103 和 DM-4107,而在生物分析中应注意 OPC-61815 和托伐普坦的浓度差异。所开发的UPLC-MS/MS方法已成功应用于一项开放性、单剂量和多剂量给药的I期试验,用于监测OPC-61815的药代动力学。这项工作为进一步研究OPC-61815的药代动力学提供了一条可行的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Chromatography B
Journal of Chromatography B 医学-分析化学
CiteScore
5.60
自引率
3.30%
发文量
306
审稿时长
44 days
期刊介绍: The Journal of Chromatography B publishes papers on developments in separation science relevant to biology and biomedical research including both fundamental advances and applications. Analytical techniques which may be considered include the various facets of chromatography, electrophoresis and related methods, affinity and immunoaffinity-based methodologies, hyphenated and other multi-dimensional techniques, and microanalytical approaches. The journal also considers articles reporting developments in sample preparation, detection techniques including mass spectrometry, and data handling and analysis. Developments related to preparative separations for the isolation and purification of components of biological systems may be published, including chromatographic and electrophoretic methods, affinity separations, field flow fractionation and other preparative approaches. Applications to the analysis of biological systems and samples will be considered when the analytical science contains a significant element of novelty, e.g. a new approach to the separation of a compound, novel combination of analytical techniques, or significantly improved analytical performance.
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