Making PBPK models more reproducible in practice
Reviewartikel, 2024

Systems biology aims to understand living organisms through mathematically modeling their behaviors at different organizational levels, ranging from molecules to populations. Modeling involves several steps, from determining the model purpose to developing the mathematical model, implementing it computationally, simulating the model's behavior, evaluating, and refining the model. Importantly, model simulation results must be reproducible, ensuring that other researchers can obtain the same results after writing the code de novo and/or using different software tools. Guidelines to increase model reproducibility have been published. However, reproducibility remains a major challenge in this field. In this paper, we tackle this challenge for physiologically-based pharmacokinetic (PBPK) models, which represent the pharmacokinetics of chemicals following exposure in humans or animals. We summarize recommendations for PBPK model reporting that should apply during model development and implementation, in order to ensure model reproducibility and comprehensibility. We make a proposal aiming to harmonize abbreviations used in PBPK models. To illustrate these recommendations, we present an original and reproducible PBPK model code in MATLAB, alongside an example of MATLAB code converted to Systems Biology Markup Language format using MOCCASIN. As directions for future improvement, more tools to convert computational PBPK models from different software platforms into standard formats would increase the interoperability of these models. The application of other systems biology standards to PBPK models is encouraged. This work is the result of an interdisciplinary collaboration involving the ELIXIR systems biology community. More interdisciplinary collaborations like this would facilitate further harmonization and application of good modeling practices in different systems biology fields.

reproducibility

systems biology

MATLAB

model code

SBML

pharmacokinetics

Författare

Elena Domínguez-Romero

Masarykova Univerzita

Faculty of Health, Medicine and Life Sciences

Stanislav Mazurenko

Fakultní Nemocnice u Sv. Anny v Brně

Masarykova Univerzita

Martin Scheringer

Masarykova Univerzita

Vitor Martins Dos Santos

Wageningen University and Research

Chris T. Evelo

Faculty of Health, Medicine and Life Sciences

Petre Mihail Anton

ELIXIR Hub

Chalmers, Life sciences, Systembiologi

John M. Hancock

Univerza V Ljubljani

Anze Zupanic

National Institute of Biology Ljubljana

Maria Suarez Diez

Wageningen University and Research

Briefings in Bioinformatics

1467-5463 (ISSN) 1477-4054 (eISSN)

Vol. 25 6 bbae569

Ämneskategorier

Bioinformatik (beräkningsbiologi)

Inbäddad systemteknik

DOI

10.1093/bib/bbae569

PubMed

39494970

Relaterade dataset

URI: https://doi.org/10.5281/zenodo.13838845

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Senast uppdaterat

2024-11-17