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PBPK Model of Morphine Incorporating Developmental Changes in Hepatic OCT1 and UGT2B7 Proteins to Explain the Variability in Clearances in Neonates and Small Infants

Morphine has large pharmacokinetic variability, which is further complicated by developmental changes in neonates and small infants. The impacts of organic cation transporter 1 (OCT1) genotype and changes in blood‐flow on morphine clearance (CL) were previously demonstrated in children, whereas chan...

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Autores principales: Emoto, Chie, Johnson, Trevor N., Neuhoff, Sibylle, Hahn, David, Vinks, Alexander A., Fukuda, Tsuyoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6063742/
https://www.ncbi.nlm.nih.gov/pubmed/29920988
http://dx.doi.org/10.1002/psp4.12306
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author Emoto, Chie
Johnson, Trevor N.
Neuhoff, Sibylle
Hahn, David
Vinks, Alexander A.
Fukuda, Tsuyoshi
author_facet Emoto, Chie
Johnson, Trevor N.
Neuhoff, Sibylle
Hahn, David
Vinks, Alexander A.
Fukuda, Tsuyoshi
author_sort Emoto, Chie
collection PubMed
description Morphine has large pharmacokinetic variability, which is further complicated by developmental changes in neonates and small infants. The impacts of organic cation transporter 1 (OCT1) genotype and changes in blood‐flow on morphine clearance (CL) were previously demonstrated in children, whereas changes in UDP‐glucuronosyltransferase 2B7 (UGT2B7) activity showed a small effect. This study, targeting neonates and small infants, was designed to assess the influence of developmental changes in OCT1 and UGT2B7 protein expression and modified blood‐flow on morphine CL using physiologically based pharmacokinetic (PBPK) modeling. The implementation of these three age‐dependent factors into the pediatric system platform resulted in reasonable prediction for an age‐dependent increase in morphine CL in these populations. Sensitivity of morphine CL to changes in cardiac output increased with age up to 3 years, whereas sensitivity to changes in UGT2B7 activity decreased. This study suggests that morphine exhibits age‐dependent extraction, likely due to the developmental increase in OCT1 and UGT2B7 protein expression/activity and hepatic blood‐flow.
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spelling pubmed-60637422018-07-31 PBPK Model of Morphine Incorporating Developmental Changes in Hepatic OCT1 and UGT2B7 Proteins to Explain the Variability in Clearances in Neonates and Small Infants Emoto, Chie Johnson, Trevor N. Neuhoff, Sibylle Hahn, David Vinks, Alexander A. Fukuda, Tsuyoshi CPT Pharmacometrics Syst Pharmacol Research Morphine has large pharmacokinetic variability, which is further complicated by developmental changes in neonates and small infants. The impacts of organic cation transporter 1 (OCT1) genotype and changes in blood‐flow on morphine clearance (CL) were previously demonstrated in children, whereas changes in UDP‐glucuronosyltransferase 2B7 (UGT2B7) activity showed a small effect. This study, targeting neonates and small infants, was designed to assess the influence of developmental changes in OCT1 and UGT2B7 protein expression and modified blood‐flow on morphine CL using physiologically based pharmacokinetic (PBPK) modeling. The implementation of these three age‐dependent factors into the pediatric system platform resulted in reasonable prediction for an age‐dependent increase in morphine CL in these populations. Sensitivity of morphine CL to changes in cardiac output increased with age up to 3 years, whereas sensitivity to changes in UGT2B7 activity decreased. This study suggests that morphine exhibits age‐dependent extraction, likely due to the developmental increase in OCT1 and UGT2B7 protein expression/activity and hepatic blood‐flow. John Wiley and Sons Inc. 2018-06-19 2018-07 /pmc/articles/PMC6063742/ /pubmed/29920988 http://dx.doi.org/10.1002/psp4.12306 Text en © 2018 The Authors CPT: Pharmacometrics & Systems Pharmacology published by Wiley Periodicals, Inc. on behalf of American Society for Clinical Pharmacology and Therapeutics This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research
Emoto, Chie
Johnson, Trevor N.
Neuhoff, Sibylle
Hahn, David
Vinks, Alexander A.
Fukuda, Tsuyoshi
PBPK Model of Morphine Incorporating Developmental Changes in Hepatic OCT1 and UGT2B7 Proteins to Explain the Variability in Clearances in Neonates and Small Infants
title PBPK Model of Morphine Incorporating Developmental Changes in Hepatic OCT1 and UGT2B7 Proteins to Explain the Variability in Clearances in Neonates and Small Infants
title_full PBPK Model of Morphine Incorporating Developmental Changes in Hepatic OCT1 and UGT2B7 Proteins to Explain the Variability in Clearances in Neonates and Small Infants
title_fullStr PBPK Model of Morphine Incorporating Developmental Changes in Hepatic OCT1 and UGT2B7 Proteins to Explain the Variability in Clearances in Neonates and Small Infants
title_full_unstemmed PBPK Model of Morphine Incorporating Developmental Changes in Hepatic OCT1 and UGT2B7 Proteins to Explain the Variability in Clearances in Neonates and Small Infants
title_short PBPK Model of Morphine Incorporating Developmental Changes in Hepatic OCT1 and UGT2B7 Proteins to Explain the Variability in Clearances in Neonates and Small Infants
title_sort pbpk model of morphine incorporating developmental changes in hepatic oct1 and ugt2b7 proteins to explain the variability in clearances in neonates and small infants
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6063742/
https://www.ncbi.nlm.nih.gov/pubmed/29920988
http://dx.doi.org/10.1002/psp4.12306
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