Literature DB >> 11999291

Quantitative relationship between myocardial concentration of tacrolimus and QT prolongation in guinea pigs: pharmacokinetic/pharmacodynamic model incorporating a site of adverse effect.

T Minematsu1, H Ohtani, Y Yamada, Y Sawada, H Sato, T Iga.   

Abstract

Clinical cases have been reported of tacrolimus (FK506)-induced QT prolongation. We have previously demonstrated sustained QT prolongation by FK506 in guinea pigs. Herein, we aimed to conduct a pharmacokinetic/pharmacodynamic (PK/PD) analysis of FK506, using a model involving the myocardial compartment. The pharmacokinetics of FK506 and its effects on QTc intervals were investigated in guinea pigs. In the pharmacokinetic study, whole blood and ventricular FK506 concentrations were analyzed, using a 4-compartment model during and after intravenous infusion of FK506 (0.01 or 0.1 mg/hr/kg). Subsequently, the concentration-response relationship between ventricular FK506 concentration and change in QTc interval was analyzed, using the maximal effect (Emax) model. Pharmacokinetic profiles of FK506 showed a delayed distribution of FK506 into the ventricle. Furthermore, the observed QT prolongation paralleled the ventricular FK506 concentrations, with no lag-time between the two. The Emax model successfully described the relationship between changes in QTc interval and ventricular FK506 concentrations. In conclusion, the PK/PD model where the myocardial drug concentration of FK506 was linked with its adverse effect could describe, for the first time, the anti-clockwise hysteresis observed in the relationship between blood FK506 concentration and QTprolongation. Such a hysteresis pattern for QTprolongation might be caused, therefore, mainly by the delayed disposition of FK506 to ventricular myocytes.

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Year:  2001        PMID: 11999291     DOI: 10.1023/a:1014460404352

Source DB:  PubMed          Journal:  J Pharmacokinet Pharmacodyn        ISSN: 1567-567X            Impact factor:   2.745


  34 in total

1.  High brain densities of the immunophilin FKBP colocalized with calcineurin.

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2.  Blockade of the human cardiac K+ channel Kv1.5 by the antibiotic erythromycin.

Authors:  D Rampe; M K Murawsky
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3.  Pharmacokinetic/pharmacodynamic analysis of tacrolimus-induced QT prolongation in guinea pigs.

Authors:  T Minematsu; H Ohtani; H Sato; T Iga
Journal:  Biol Pharm Bull       Date:  1999-12       Impact factor: 2.233

4.  Pharmacokinetic-pharmacodynamic analysis of the electrocardiographic effects of terfenadine and quinidine in rats.

Authors:  H Ohtani; E Hanada; K Yamamoto; Y Sawada; T Iga
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5.  Prediction of the volumes of distribution of basic drugs in humans based on data from animals.

Authors:  Y Sawada; M Hanano; Y Sugiyama; H Harashima; T Iga
Journal:  J Pharmacokinet Biopharm       Date:  1984-12

6.  QT prolongation and near fatal cardiac arrhythmia after intravenous tacrolimus administration: a case report.

Authors:  S P Hodak; J B Moubarak; I Rodriguez; M C Gelfand; M R Alijani; C M Tracy
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7.  Mechanism of block and identification of the verapamil binding domain to HERG potassium channels.

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8.  P-glycoprotein-dependent disposition kinetics of tacrolimus: studies in mdr1a knockout mice.

Authors:  K Yokogawa; M Takahashi; I Tamai; H Konishi; M Nomura; S Moritani; K Miyamoto; A Tsuji
Journal:  Pharm Res       Date:  1999-08       Impact factor: 4.200

9.  Distribution of cardiac output in the unstressed pregnant guinea pig.

Authors:  L L Peeters; G Grutters; C B Martin
Journal:  Am J Obstet Gynecol       Date:  1980-12-15       Impact factor: 8.661

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  17 in total

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Authors:  Lena E Friberg; Geoffrey K Isbister; Stephen B Duffull
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2.  Real Patient and its Virtual Twin: Application of Quantitative Systems Toxicology Modelling in the Cardiac Safety Assessment of Citalopram.

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4.  Understanding the hysteresis loop conundrum in pharmacokinetic/pharmacodynamic relationships.

Authors:  Christopher Louizos; Jaime A Yáñez; M Laird Forrest; Neal M Davies
Journal:  J Pharm Pharm Sci       Date:  2014       Impact factor: 2.327

5.  FKBP12 is a critical regulator of the heart rhythm and the cardiac voltage-gated sodium current in mice.

Authors:  Mitsunori Maruyama; Bai-Yan Li; Hanying Chen; Xuehong Xu; Long-Sheng Song; Silvia Guatimosim; Wuqiang Zhu; Weidong Yong; Wenjun Zhang; Guixue Bu; Shien-Fong Lin; Michael C Fishbein; W Jonathan Lederer; John H Schild; Loren J Field; Michael Rubart; Peng-Sheng Chen; Weinian Shou
Journal:  Circ Res       Date:  2011-03-03       Impact factor: 17.367

Review 6.  Pharmacokinetic-pharmacodynamic modeling in the data analysis and interpretation of drug-induced QT/QTc prolongation.

Authors:  Vladimir Piotrovsky
Journal:  AAPS J       Date:  2005-10-24       Impact factor: 4.009

7.  Towards Bridging Translational Gap in Cardiotoxicity Prediction: an Application of Progressive Cardiac Risk Assessment Strategy in TdP Risk Assessment of Moxifloxacin.

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Journal:  AAPS J       Date:  2018-03-14       Impact factor: 4.009

8.  Effects of anti-malarial drugs on the electrocardiographic QT interval modelled in the isolated perfused guinea pig heart system.

Authors:  Atsushi Kinoshita; Harumi Yamada; Hajime Kotaki; Mikio Kimura
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9.  Mechanism-based pharmacodynamic modeling.

Authors:  Melanie A Felmlee; Marilyn E Morris; Donald E Mager
Journal:  Methods Mol Biol       Date:  2012

10.  Korean Red Ginseng Induced Cardioprotection against Myocardial Ischemia in Guinea Pig.

Authors:  Kyu Hee Lim; Chang-Won Kang; Jin-Yong Choi; Jong-Hoon Kim
Journal:  Korean J Physiol Pharmacol       Date:  2013-07-30       Impact factor: 2.016

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