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Use of In Vivo Imaging and Physiologically-Based Kinetic Modelling to Predict Hepatic Transporter Mediated Drug–Drug Interactions in Rats.

Authors :
Melillo, Nicola
Scotcher, Daniel
Kenna, J. Gerry
Green, Claudia
Hines, Catherine D. G.
Laitinen, Iina
Hockings, Paul D.
Ogungbenro, Kayode
Gunwhy, Ebony R.
Sourbron, Steven
Waterton, John C.
Schuetz, Gunnar
Galetin, Aleksandra
Source :
Pharmaceutics; Mar2023, Vol. 15 Issue 3, p896, 25p
Publication Year :
2023

Abstract

Gadoxetate, a magnetic resonance imaging (MRI) contrast agent, is a substrate of organic-anion-transporting polypeptide 1B1 and multidrug resistance-associated protein 2. Six drugs, with varying degrees of transporter inhibition, were used to assess gadoxetate dynamic contrast enhanced MRI biomarkers for transporter inhibition in rats. Prospective prediction of changes in gadoxetate systemic and liver AUC (AUCR), resulting from transporter modulation, were performed by physiologically-based pharmacokinetic (PBPK) modelling. A tracer-kinetic model was used to estimate rate constants for hepatic uptake (k<subscript>he</subscript>), and biliary excretion (k<subscript>bh</subscript>). The observed median fold-decreases in gadoxetate liver AUC were 3.8- and 1.5-fold for ciclosporin and rifampicin, respectively. Ketoconazole unexpectedly decreased systemic and liver gadoxetate AUCs; the remaining drugs investigated (asunaprevir, bosentan, and pioglitazone) caused marginal changes. Ciclosporin decreased gadoxetate k<subscript>he</subscript> and k<subscript>bh</subscript> by 3.78 and 0.09 mL/min/mL, while decreases for rifampicin were 7.20 and 0.07 mL/min/mL, respectively. The relative decrease in k<subscript>he</subscript> (e.g., 96% for ciclosporin) was similar to PBPK-predicted inhibition of uptake (97–98%). PBPK modelling correctly predicted changes in gadoxetate systemic AUCR, whereas underprediction of decreases in liver AUCs was evident. The current study illustrates the modelling framework and integration of liver imaging data, PBPK, and tracer-kinetic models for prospective quantification of hepatic transporter-mediated DDI in humans. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
19994923
Volume :
15
Issue :
3
Database :
Complementary Index
Journal :
Pharmaceutics
Publication Type :
Academic Journal
Accession number :
162816323
Full Text :
https://doi.org/10.3390/pharmaceutics15030896