Physiologically based pharmacokinetic modeling of cyclotrimethylenetrinitramine in male rats

被引:9
|
作者
Krishnan, Kannan [2 ]
Crouse, Lee C. B. [1 ]
Bazar, Matthew A. [1 ]
Major, Michael A. [1 ]
Reddy, Gunda [1 ]
机构
[1] USA, Ctr Hlth Promot & Prevent Med, Directorate Toxicol, Aberdeen Proving Ground, MD 21010 USA
[2] Univ Montreal, DSEST, Montreal, PQ, Canada
关键词
RDX; PBPK model; pharmacokinetics; HEXAHYDRO-1,3,5-TRINITRO-1,3,5-TRIAZINE RDX; PARTITION-COEFFICIENTS; ORGANIC-CHEMICALS; RISK-ASSESSMENT; PREDICTION; HUMANS; PLASMA; BLOOD; SOILS;
D O I
10.1002/jat.1455
中图分类号
R99 [毒物学(毒理学)];
学科分类号
100405 ;
摘要
A physiologically based pharmacokinetic (PBPK) model for simulating the kinetics of cyclotrimethylene trinitramine (RDX) in male rats was developed. The model consisted of five compartments interconnected by systemic circulation. The tissue uptake of RDX was described as a perfusion-limited process whereas hepatic clearance and gastrointestinal absorption were described as first-order processes. The physiological parameters for the rat were obtained from the literature whereas the tissue: blood partition coefficients were estimated on the basis of the tissue and blood composition as well as the lipophilicity characteristics of RDX (logP = 0.87). The tissue: blood partition coefficients (brain, 1.4; muscle, 1; fat, 7.55; liver, 1.2) obtained with this algorithmic approach were used without any adjustment, since a focused in vitro study indicated that the relative concentration of RDX in whole blood and plasma is about 1:1. An initial estimate of metabolic clearance of RDX (2.2 h(-1) kg(-1)) was obtained by fitting PBPK model simulations to the data on plasma kinetics in rats administered 5.5 mg kg(-1) i.v. The rat PBPK model without any further change in parameter values adequately simulated the blood kinetic data for RDX at much lower doses (0.77 and 1.04 mg kg(-1) i.v.), collected in this study. The same model, with the incorporation of a first order oral absorption rate constant (K-a 0.75 h(-1)), reproduced the blood kinetics of RDX in rats receiving a single gavage dose of 1.53 or 2.02 mg kg(-1). Additionally, the model simulated the plasma and blood kinetics of orally administered RDX at a higher dose (100 mg kg(-1)) or lower doses (0.2 or 1.24 mg kg(-1)) in male rats. Overall, the rat PBPK model for RDX with its parameters adequately simulates the blood and plasma kinetic data, obtained following i.v. doses ranging from 0.77 to 5.5 mg kg(-1) as well as oral doses ranging from 0.2 to 100 mg kg(-1). Published in 2009 by John Wiley & Sons, Ltd.
引用
收藏
页码:629 / 637
页数:9
相关论文
共 50 条
  • [1] Pharmacokinetic Characterization of Supinoxin and Its Physiologically Based Pharmacokinetic Modeling in Rats
    Song, Yoo-Kyung
    Seol, Yun-Hwan
    Kim, Min Ju
    Jeong, Jong-Woo
    Choi, Hae-In
    Lee, Seung-Won
    Chae, Yoon-Jee
    Ahn, Sunjoo
    Gong, Young-Dae
    Lee, Kyeong-Ryoon
    Koo, Tae-Sung
    PHARMACEUTICS, 2021, 13 (03)
  • [2] Physiologically based pharmacokinetic (PBPK) modeling of genistein in rats.
    Schlosser, PM
    Borghoff, SJ
    Coldham, NG
    Tran, HT
    Upmeier, A
    Zager, MG
    TOXICOLOGICAL SCIENCES, 2003, 72 : 180 - 180
  • [3] Physiologically based pharmacokinetic modeling of chloroethane disposition in mice, rats, and women
    Gargas, Michael L.
    Sweeney, Lisa M.
    Himmelstein, Matthew W.
    Pottenger, Lynn H.
    Bus, James S.
    Holder, James W.
    TOXICOLOGICAL SCIENCES, 2008, 104 (01) : 54 - 66
  • [4] Physiologically based pharmacokinetic modeling of tea catechin mixture in rats and humans
    Law, Francis C. P.
    Yao, Meicun
    Bi, Hui-Chang
    Lam, Stephen
    PHARMACOLOGY RESEARCH & PERSPECTIVES, 2017, 5 (03):
  • [5] Physiologically Based Pharmacokinetic (PBPK) Modeling of Metabolic Pathways of Bromochloromethane in Rats
    Cuello, W. S.
    Janes, T. A. T.
    Jessee, J. M.
    Venecek, M. A.
    Sawyer, M. E.
    Eklund, C. R.
    Evans, M. V.
    JOURNAL OF TOXICOLOGY, 2012, 2012
  • [6] A physiologically based pharmacokinetic model for endosulfan in the male Sprague-Dawley rats
    Chan, Melissa R. L.
    Morisawa, Shinsuke
    Nakayama, Aki
    Kawamoto, Yuko
    Sugimoto, Miki
    Yoneda, Minoru
    ENVIRONMENTAL TOXICOLOGY, 2006, 21 (05) : 464 - 478
  • [7] Physiologically Based Pharmacokinetic Modeling of Nanoparticles
    Lu, Mingguang
    Al-Jamal, Khuloud T.
    Kostarelos, Kostas
    Reineke, Joshua
    ACS NANO, 2010, 4 (11) : 6303 - 6317
  • [8] Physiologically Based Pharmacokinetic Modeling of Palbociclib
    Yu, Yanke
    Loi, Cho-Ming
    Hoffman, Justin
    Wang, Diane
    JOURNAL OF CLINICAL PHARMACOLOGY, 2017, 57 (02): : 173 - 184
  • [9] Physiologically Based Pharmacokinetic Modeling of Nanoparticles
    Yuan, Dongfen
    He, Hua
    Wu, Yun
    Fan, Jianghong
    Cao, Yanguang
    JOURNAL OF PHARMACEUTICAL SCIENCES, 2019, 108 (01) : 58 - 72
  • [10] Physiologically based pharmacokinetic modeling of DMB in rats for predicting its pharmacokinetics in humans
    Lee, Kyeong-Ryoon
    Chae, Jung-Byung
    Yim, Chang-Soon
    Kim, Dae-Duk
    Chong, Saeho
    Shim, Chang-Koo
    Chung, Suk-Jae
    DRUG METABOLISM REVIEWS, 2011, 43 : 72 - 73