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大鼠静脉注射和肌肉注射甲泼尼龙后的药代动力学

Pharmacokinetics of methylprednisolone after intravenous and intramuscular administration in rats.

作者信息

Hazra Anasuya, Pyszczynski Nancy, DuBois Debra C, Almon Richard R, Jusko William J

机构信息

Department of Pharmaceutical Sciences, University at Buffalo, State University of NY, Buffalo, NY 14260, USA.

出版信息

Biopharm Drug Dispos. 2007 Sep;28(6):263-73. doi: 10.1002/bdd.551.

Abstract

Methylprednisolone (MPL) pharmacokinetics was examined in adrenalectomized (ADX) and normal rats to assess the feasibility of intramuscular (i.m.) dosing for use in pharmacodynamic studies. Several study phases were pursued. Parallel group studies were performed in normal and ADX rats given 50 mg/kg MPL (i.v. or i.m.) and blood samples were collected up to 6 h. Data from studies where normal rats were dosed with 50 mg/kg MPL i.m. and killed over either 6 or 96 h were combined to determine muscle site and plasma MPL concentrations. Lastly, ADX rats were dosed with 50 mg/kg MPL i.m. and killed over 18 h to assess hepatic tyrosine aminotransferase (TAT) dynamics. MPL exhibited bi-exponential kinetics after i.v. dosing with a terminal slope of 2.1 h(-1). The i.m. drug was absorbed slowly with two first-order absorption rate constants, 1.26 and 0.219 h(-1) indicating flip-flop kinetics with overall 50% bioavailability. The kinetics of MPL at the injection site exhibited slow, dual absorption rates. Although i.m. MPL showed lower bioavailability compared with other corticosteroids in rats, TAT dynamics revealed similar i.m. and i.v. response profiles. The more convenient intramuscular dosing can replace the i.v. route without causing marked differences in pharmacodynamics.

摘要

在肾上腺切除(ADX)大鼠和正常大鼠中研究了甲泼尼龙(MPL)的药代动力学,以评估肌肉注射给药用于药效学研究的可行性。进行了几个研究阶段。对给予50mg/kg MPL(静脉注射或肌肉注射)的正常大鼠和ADX大鼠进行平行组研究,并在6小时内采集血样。将正常大鼠肌肉注射50mg/kg MPL并在6小时或96小时处死的研究数据合并,以确定肌肉部位和血浆MPL浓度。最后,给ADX大鼠肌肉注射50mg/kg MPL,并在18小时内处死,以评估肝酪氨酸转氨酶(TAT)的动态变化。静脉注射MPL后呈现双指数动力学,终末斜率为2.1 h⁻¹。肌肉注射药物吸收缓慢,有两个一级吸收速率常数,分别为1.26和0.219 h⁻¹,表明呈现反翻转动力学,总体生物利用度为50%。MPL在注射部位的动力学表现出缓慢的双重吸收速率。尽管与大鼠中的其他皮质类固醇相比,肌肉注射MPL的生物利用度较低,但TAT动态显示肌肉注射和静脉注射的反应曲线相似。更方便的肌肉注射给药可以替代静脉注射途径,而不会在药效学上引起明显差异。

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