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犬口服不同剂量泼尼松的药代动力学:采用单纯合并数据法的初步研究结果

Pharmacokinetics of Oral Prednisone at Various Doses in Dogs: Preliminary Findings Using a Naïve Pooled-Data Approach.

作者信息

Sebbag Lionel, Mochel Jonathan P

机构信息

Department of Veterinary Clinical Sciences, College of Veterinary Medicine, Iowa State University, Ames, IA, United States.

Department of Biomedical Sciences, SMART Pharmacology, College of Veterinary Medicine, Iowa State University, Ames, IA, United States.

出版信息

Front Vet Sci. 2020 Oct 19;7:571457. doi: 10.3389/fvets.2020.571457. eCollection 2020.

Abstract

This pilot study aimed to determine the plasma pharmacokinetics of prednisone and its active metabolite prednisolone following oral prednisone administration in dogs-using dosing regimens that cover anti-inflammatory to immuno-suppressive biological effects. Six healthy Beagle dogs were given 0.5, 1, 2, and 4 mg/kg prednisone orally once daily for 5 days, each successive course separated by a washout period of 9 days. At steady-state (Day 4), a sparse sampling design allowed for collection of blood from 2/6 individuals for each of the following time points: 0, 15, 30, 60, 90, 120, 240, 480, and 720 min. Prednisone and prednisolone were quantified by liquid chromatography-tandem mass spectrometry (LC-MS/MS). Oral prednisone was rapidly converted to prednisolone in dogs (≤ 30 min), with plasma prednisolone reaching ~6-fold greater levels (0-656.1 ng/mL) than prednisone (0-98.8 ng/mL) overall. The ratio of plasma prednisolone/prednisone was constant across the dosing regimens, indicating a non-saturation of the hepatic 11-β-hydroxysteroid dehydrogenase that converts the prodrug to the active metabolite in dogs. The level of both corticosteroids increased with increasing dosing regimens, albeit in a non-linear manner. Non-compartmental pharmacokinetic parameters are described, including peak concentration (C), time of peak concentration (T), area under the concentration-time curve (AUC), and the elimination half-life (t ) for both corticosteroids, as well as clearance and volume of distribution during the terminal phase (V) for the administered drug (prednisone). In sum, the present study utilizes a sparse sampling and naïve pooled-data approach to estimate pharmacokinetic parameters for prednisone and prednisolone, providing supporting preliminary knowledge that can be used to optimize corticosteroid efficacy and minimize toxicity in canine patients.

摘要

这项初步研究旨在确定犬口服泼尼松后泼尼松及其活性代谢产物泼尼松龙的血浆药代动力学,采用涵盖抗炎至免疫抑制生物学效应的给药方案。6只健康的比格犬每天口服一次0.5、1、2和4mg/kg泼尼松,持续5天,每个连续疗程之间间隔9天的洗脱期。在稳态(第4天)时,采用稀疏采样设计,在以下时间点从2/6个体采集血液:0、15、30、60、90、120、240、480和720分钟。通过液相色谱-串联质谱法(LC-MS/MS)对泼尼松和泼尼松龙进行定量。犬口服泼尼松后迅速转化为泼尼松龙(≤30分钟),总体而言,血浆泼尼松龙水平(0-656.1 ng/mL)比泼尼松(0-98.8 ng/mL)高约6倍。血浆泼尼松龙/泼尼松的比值在不同给药方案中保持恒定,表明在犬体内将前体药物转化为活性代谢产物的肝脏11-β-羟基类固醇脱氢酶未饱和。两种皮质类固醇的水平均随给药方案的增加而升高,尽管呈非线性方式。描述了非房室药代动力学参数,包括两种皮质类固醇的峰浓度(C)、峰浓度时间(T)、浓度-时间曲线下面积(AUC)和消除半衰期(t),以及给药药物(泼尼松)终末相的清除率和分布容积(V)。总之,本研究采用稀疏采样和原始汇总数据方法来估计泼尼松和泼尼松龙的药代动力学参数,提供了可用于优化犬类患者皮质类固醇疗效并将毒性降至最低的支持性初步知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea9f/7604266/a90159bb7d6d/fvets-07-571457-g0001.jpg

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