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Assessment of Hepatic Detoxification Activity: Proposal of an Improved Variant of the (13)C-Methacetin Breath Test

Breath tests based on the administration of a (13)C-labeled drug and subsequent monitoring of (13)CO(2) in the breath (quantified as DOB – delta over baseline) liberated from the drug during hepatic CPY-dependent detoxification are important tools in liver function diagnostics. The capability of suc...

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Autores principales: Holzhütter, Hermann-Georg, Lock, Johan Friso, Taheri, Pouria, Bulik, Sascha, Goede, Andrean, Stockmann, Martin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3744534/
https://www.ncbi.nlm.nih.gov/pubmed/23967104
http://dx.doi.org/10.1371/journal.pone.0070780
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author Holzhütter, Hermann-Georg
Lock, Johan Friso
Taheri, Pouria
Bulik, Sascha
Goede, Andrean
Stockmann, Martin
author_facet Holzhütter, Hermann-Georg
Lock, Johan Friso
Taheri, Pouria
Bulik, Sascha
Goede, Andrean
Stockmann, Martin
author_sort Holzhütter, Hermann-Georg
collection PubMed
description Breath tests based on the administration of a (13)C-labeled drug and subsequent monitoring of (13)CO(2) in the breath (quantified as DOB – delta over baseline) liberated from the drug during hepatic CPY-dependent detoxification are important tools in liver function diagnostics. The capability of such breath tests to reliably indicate hepatic CYP performance is limited by the fact that (13)CO(2) is not exclusively exhaled but also exchanged with other compartments of the body. In order to assess this bias caused by variations of individual systemic CO(2) kinetics we administered intravenously the test drug (13)C-methacetin to 25 clinically liver-healthy individuals and monitored progress curves of DOB and the plasma concentration of (13)C-methacetin. Applying compartment modelling we estimated for each individual a set of kinetic parameters characterizing the time-dependent exchange of the drug and of CO(2) with the liver and non-hepatic body compartments. This analysis revealed that individual variations in the kinetics of CO(2) may account for up to 30% deviation of DOB curve parameters from their mean at otherwise identical (13)C-methacetin metabolization rates. In order to correct for this bias we introduced a novel detoxification score which ideally should be assessed from the DOB curve of a 2-step test (“2DOB”) which is initialized with the injection of a standard dose of (13)C-labeled bicarbonate (in order to provide information on the actual CO(2) status of the individual) followed by injection of the (13)C-labeled test drug (the common procedure). Computer simulations suggest that the predictive power of the proposed 2DOB breath test to reliably quantity the CYP-specific hepatic detoxification activity should be significantly higher compared to the conventional breath test.
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spelling pubmed-37445342013-08-21 Assessment of Hepatic Detoxification Activity: Proposal of an Improved Variant of the (13)C-Methacetin Breath Test Holzhütter, Hermann-Georg Lock, Johan Friso Taheri, Pouria Bulik, Sascha Goede, Andrean Stockmann, Martin PLoS One Research Article Breath tests based on the administration of a (13)C-labeled drug and subsequent monitoring of (13)CO(2) in the breath (quantified as DOB – delta over baseline) liberated from the drug during hepatic CPY-dependent detoxification are important tools in liver function diagnostics. The capability of such breath tests to reliably indicate hepatic CYP performance is limited by the fact that (13)CO(2) is not exclusively exhaled but also exchanged with other compartments of the body. In order to assess this bias caused by variations of individual systemic CO(2) kinetics we administered intravenously the test drug (13)C-methacetin to 25 clinically liver-healthy individuals and monitored progress curves of DOB and the plasma concentration of (13)C-methacetin. Applying compartment modelling we estimated for each individual a set of kinetic parameters characterizing the time-dependent exchange of the drug and of CO(2) with the liver and non-hepatic body compartments. This analysis revealed that individual variations in the kinetics of CO(2) may account for up to 30% deviation of DOB curve parameters from their mean at otherwise identical (13)C-methacetin metabolization rates. In order to correct for this bias we introduced a novel detoxification score which ideally should be assessed from the DOB curve of a 2-step test (“2DOB”) which is initialized with the injection of a standard dose of (13)C-labeled bicarbonate (in order to provide information on the actual CO(2) status of the individual) followed by injection of the (13)C-labeled test drug (the common procedure). Computer simulations suggest that the predictive power of the proposed 2DOB breath test to reliably quantity the CYP-specific hepatic detoxification activity should be significantly higher compared to the conventional breath test. Public Library of Science 2013-08-15 /pmc/articles/PMC3744534/ /pubmed/23967104 http://dx.doi.org/10.1371/journal.pone.0070780 Text en © 2013 Holzhütter et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Holzhütter, Hermann-Georg
Lock, Johan Friso
Taheri, Pouria
Bulik, Sascha
Goede, Andrean
Stockmann, Martin
Assessment of Hepatic Detoxification Activity: Proposal of an Improved Variant of the (13)C-Methacetin Breath Test
title Assessment of Hepatic Detoxification Activity: Proposal of an Improved Variant of the (13)C-Methacetin Breath Test
title_full Assessment of Hepatic Detoxification Activity: Proposal of an Improved Variant of the (13)C-Methacetin Breath Test
title_fullStr Assessment of Hepatic Detoxification Activity: Proposal of an Improved Variant of the (13)C-Methacetin Breath Test
title_full_unstemmed Assessment of Hepatic Detoxification Activity: Proposal of an Improved Variant of the (13)C-Methacetin Breath Test
title_short Assessment of Hepatic Detoxification Activity: Proposal of an Improved Variant of the (13)C-Methacetin Breath Test
title_sort assessment of hepatic detoxification activity: proposal of an improved variant of the (13)c-methacetin breath test
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3744534/
https://www.ncbi.nlm.nih.gov/pubmed/23967104
http://dx.doi.org/10.1371/journal.pone.0070780
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