特殊患者血浆对LC-MS/MS定量药代动力学的影响。

Dongmei Zhou, Lifang Sun, M. Nguyen, L. Yeh, David M. Wilson
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引用次数: 0

摘要

lesinurad是一种选择性尿酸重吸收抑制剂,临床开发需要分析特殊患者人群血浆中的lesinurad。EMA和FDA生物分析方法验证指南建议,如果要分析来自特殊患者群体的样品,则应研究基质对定量的影响。除了lesinurad(血浆蛋白结合98.2%)外,还研究了特殊人群血浆基质对维拉帕米(PPB 89.6%)、别嘌呤醇和氧嘌呤醇(PPB可忽略)定量的影响。结果特殊人群血浆在稳定同位素标记内标法、蛋白质沉淀萃取法和LC-MS/MS法3种定量方法上均无基质效应。验证的lesinurad血浆定量方法成功应用于肾损害患者的药代动力学评价,为临床研究提供支持。结论特殊人群血浆不影响药物的定量,人血浆中血浆蛋白结合水平范围广。在确认基质对定量没有影响后,生物分析方法可用于支持特殊人群临床研究的药代动力学评价。
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The effects of special patient population plasma on pharmacokinetic quantifications using LC-MS/MS.
BACKGROUND Clinical development of lesinurad, a selective uric acid reabsorption inhibitor, required analysis of lesinurad in plasma from special patient populations. EMA and FDA bioanalytical method validation guidance have recommended studying matrix effects on quantitation if samples from special patient populations are to be analyzed. In addition to lesinurad (plasma protein binding 98.2%), the matrix effects from special population plasma on the quantitation of verapamil (PPB 89.6%), allopurinol and oxypurinol (PPB negligible) were also investigated. RESULTS The plasma from special population patients had no matrix effects on the three quantification methods with stable isotope labeled internal standard, protein precipitation extraction, and LC-MS/MS detection. The validated lesinurad plasma quantification method was successfully applied for the pharmacokinetic evaluations to support the clinical studies in renal impaired patients. CONCLUSIONS Special population plasma did not affect quantitation of drugs with a wide range of plasma protein binding levels in human plasma. With the confirmation that there is no impact on quantification from the matrix, the bioanalytical method can be used to support the pharmacokinetic evaluations for clinical studies in special populations.
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来源期刊
Drug metabolism letters
Drug metabolism letters Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
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发文量
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期刊介绍: Drug Metabolism Letters publishes letters and research articles on major advances in all areas of drug metabolism and disposition. The emphasis is on publishing quality papers very rapidly by taking full advantage of the Internet technology both for the submission and review of manuscripts. The journal covers the following areas: In vitro systems including CYP-450; enzyme induction and inhibition; drug-drug interactions and enzyme kinetics; pharmacokinetics, toxicokinetics, species scaling and extrapolations; P-glycoprotein and transport carriers; target organ toxicity and interindividual variability; drug metabolism and disposition studies; extrahepatic metabolism; phase I and phase II metabolism; recent developments for the identification of drug metabolites.
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