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Semiphysiological versus Empirical Modelling of the Population Pharmacokinetics of Free and Total Cefazolin during Pregnancy

This work describes a first population pharmacokinetic (PK) model for free and total cefazolin during pregnancy, which can be used for dose regimen optimization. Secondly, analysis of PK studies in pregnant patients is challenging due to study design limitations. We therefore developed a semiphysiol...

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Autores principales: van Hasselt, J. G. Coen, Allegaert, Karel, van Calsteren, Kristel, Beijnen, Jos H., Schellens, Jan H. M., Huitema, Alwin D. R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3930089/
https://www.ncbi.nlm.nih.gov/pubmed/24672799
http://dx.doi.org/10.1155/2014/897216
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author van Hasselt, J. G. Coen
Allegaert, Karel
van Calsteren, Kristel
Beijnen, Jos H.
Schellens, Jan H. M.
Huitema, Alwin D. R.
author_facet van Hasselt, J. G. Coen
Allegaert, Karel
van Calsteren, Kristel
Beijnen, Jos H.
Schellens, Jan H. M.
Huitema, Alwin D. R.
author_sort van Hasselt, J. G. Coen
collection PubMed
description This work describes a first population pharmacokinetic (PK) model for free and total cefazolin during pregnancy, which can be used for dose regimen optimization. Secondly, analysis of PK studies in pregnant patients is challenging due to study design limitations. We therefore developed a semiphysiological modeling approach, which leveraged gestation-induced changes in creatinine clearance (CrCL) into a population PK model. This model was then compared to the conventional empirical covariate model. First, a base two-compartmental PK model with a linear protein binding was developed. The empirical covariate model for gestational changes consisted of a linear relationship between CL and gestational age. The semiphysiological model was based on the base population PK model and a separately developed mixed-effect model for gestation-induced change in CrCL. Estimates for baseline clearance (CL) were 0.119 L/min (RSE 58%) and 0.142 L/min (RSE 44%) for the empirical and semiphysiological models, respectively. Both models described the available PK data comparably well. However, as the semiphysiological model was based on prior knowledge of gestation-induced changes in renal function, this model may have improved predictive performance. This work demonstrates how a hybrid semiphysiological population PK approach may be of relevance in order to derive more informative inferences.
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spelling pubmed-39300892014-03-26 Semiphysiological versus Empirical Modelling of the Population Pharmacokinetics of Free and Total Cefazolin during Pregnancy van Hasselt, J. G. Coen Allegaert, Karel van Calsteren, Kristel Beijnen, Jos H. Schellens, Jan H. M. Huitema, Alwin D. R. Biomed Res Int Research Article This work describes a first population pharmacokinetic (PK) model for free and total cefazolin during pregnancy, which can be used for dose regimen optimization. Secondly, analysis of PK studies in pregnant patients is challenging due to study design limitations. We therefore developed a semiphysiological modeling approach, which leveraged gestation-induced changes in creatinine clearance (CrCL) into a population PK model. This model was then compared to the conventional empirical covariate model. First, a base two-compartmental PK model with a linear protein binding was developed. The empirical covariate model for gestational changes consisted of a linear relationship between CL and gestational age. The semiphysiological model was based on the base population PK model and a separately developed mixed-effect model for gestation-induced change in CrCL. Estimates for baseline clearance (CL) were 0.119 L/min (RSE 58%) and 0.142 L/min (RSE 44%) for the empirical and semiphysiological models, respectively. Both models described the available PK data comparably well. However, as the semiphysiological model was based on prior knowledge of gestation-induced changes in renal function, this model may have improved predictive performance. This work demonstrates how a hybrid semiphysiological population PK approach may be of relevance in order to derive more informative inferences. Hindawi Publishing Corporation 2014 2014-02-03 /pmc/articles/PMC3930089/ /pubmed/24672799 http://dx.doi.org/10.1155/2014/897216 Text en Copyright © 2014 J. G. Coen van Hasselt et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
van Hasselt, J. G. Coen
Allegaert, Karel
van Calsteren, Kristel
Beijnen, Jos H.
Schellens, Jan H. M.
Huitema, Alwin D. R.
Semiphysiological versus Empirical Modelling of the Population Pharmacokinetics of Free and Total Cefazolin during Pregnancy
title Semiphysiological versus Empirical Modelling of the Population Pharmacokinetics of Free and Total Cefazolin during Pregnancy
title_full Semiphysiological versus Empirical Modelling of the Population Pharmacokinetics of Free and Total Cefazolin during Pregnancy
title_fullStr Semiphysiological versus Empirical Modelling of the Population Pharmacokinetics of Free and Total Cefazolin during Pregnancy
title_full_unstemmed Semiphysiological versus Empirical Modelling of the Population Pharmacokinetics of Free and Total Cefazolin during Pregnancy
title_short Semiphysiological versus Empirical Modelling of the Population Pharmacokinetics of Free and Total Cefazolin during Pregnancy
title_sort semiphysiological versus empirical modelling of the population pharmacokinetics of free and total cefazolin during pregnancy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3930089/
https://www.ncbi.nlm.nih.gov/pubmed/24672799
http://dx.doi.org/10.1155/2014/897216
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