在质量平衡研究中,口服剂量的放射性标记和非放射性标记药物的不均匀吸收导致药物吸收和循环代谢物的不正确估计。

Ryan H Takahashi, Jae H Chang, Jodie Pang, Xiaorong Liang, Shuguang Ma
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引用次数: 0

摘要

背景:使用放射性标记物质(14C或3H)进行的质量平衡研究明确地表征了药物的吸收、代谢和排泄(AME)。这些研究的一个关键方面是,从给药到完全从体内消除,放射性示踪剂保持其在总药物中的比例。在对比格犬GDC-0276的研究中,我们观察到14C放射性示踪剂的比例(比活性)在研究过程中有所变化。方法:采用高分辨率精确质谱法测定GDC- 0276及其代谢产物在血浆和排泄物样品中的12C和14C同位素,测定其表观比活性,其比活性高于给药配方。调整药物浓度以校正GDC-0276 AME和pkk的特异活性。结果:14C的富集导致了更高的特异活性,这与放射性示踪剂从给药配方中更快更广泛的吸收是一致的。这导致高估了吸收剂量、尿液和胆汁的消除程度以及对循环代谢物的暴露。这些偏差通过质谱测定研究样品的特定活性得到纠正。结论:假设放射性示踪剂在整个放射性标记研究中与总药物成正比,在比格犬的14C研究中是无效的。这可能是由于口服剂量的放射性示踪剂和非放射性标记试验品由于不相等的固体形式而吸收不均匀造成的。通过表征放射性示踪剂的差异吸收,我们能够更准确地描述狗体内GDC-0276的AME。
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Unequal Absorption of Radiolabeled and Nonradiolabeled Drug from the Oral Dose Leads to Incorrect Estimates of Drug Absorption and Circulating Metabolites in a Mass Balance Study.

Background: Mass balance studies conducted using radiolabeled material (14C or 3H) definitively characterize the Absorption, Metabolism, and Excretion (AME) of a drug. A critical aspect of these studies is that the radiotracer maintains its proportion to total drug from its administration to its complete elimination from the body. In the study of GDC-0276 in beagle dogs, we observed that the 14C radiotracer proportion (specific activity) varied through the study.

Method: High resolution-accurate mass spectrometric measurements of 12C and 14C isotopes of GDC- 0276 and its metabolites in plasma and excreta samples were used to determine the apparent specific activities, which were higher than the specific activity of the dosing formulation. Drug concentrations were adjusted to the observed specific activities to correct the readouts for GDC-0276 AME and PK.

Results: The enrichment of 14C, which resulted in higher specific activities, was consistent with faster and more extensive absorption of the radiotracer from the dosing formulation. This resulted in overestimating the dose absorbed, the extent of elimination in urine and bile, and the exposures to circulating metabolites. These biases were corrected by the specific activities determined for study samples by mass spectrometry.

Conclusion: Assuming that the radiotracer was proportional to total drug throughout a radiolabeled study was not valid in a 14C study in beagle dogs. This presumably resulted from unequal absorption of the radiotracer and nonradiolabeled test articles from the oral dose due to inequivalent solid forms. We were able to provide a more accurate description of the AME of GDC-0276 in dogs by characterizing the differential absorption of the radiotracer.

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来源期刊
Drug metabolism letters
Drug metabolism letters Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
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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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