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Verification and reproducible curation of the BioModels repository.

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Summary

We updated and corrected Simulation Experiment Description Markup Language (SED-ML) files for 1055 mechanistic models in the BioModels database. This enhances the reproducibility and credibility of computational biology research using these models.

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Area of Science:

  • Computational biology
  • Systems biology
  • Bioinformatics

Background:

  • The BioModels Repository houses over 1000 curated mechanistic models, primarily in Systems Biology Markup Language (SBML).
  • SBML formally defines models but lacks computational experimental conditions, hindering result reproducibility.
  • Simulation Experiment Description Markup Language (SED-ML) standardizes experimental conditions for simulations.

Purpose of the Study:

  • To enhance the reproducibility and credibility of curated mechanistic models in BioModels.
  • To update and correct existing SED-ML files and provide new ones for a substantial portion of the BioModels collection.
  • To leverage SED-ML for verifying simulation results across multiple computational engines.

Main Methods:

  • Updated and corrected SED-ML files for 1055 curated mechanistic models from the BioModels Repository.
  • Developed a wrapper architecture for interpreting SED-ML files.
  • Performed verification of simulation results across five different Ordinary Differential Equation (ODE)-based biosimulation engines.

Main Results:

  • Successfully updated and corrected SED-ML files for 1055 BioModels entries, addressing previous inaccuracies.
  • Demonstrated the implementation-independent nature of SED-ML through cross-engine verification.
  • Provided a more robust and reliable set of simulation experiment descriptions for a large collection of biological models.

Conclusions:

  • The updated SED-ML files significantly improve the reproducibility of results from BioModels.
  • Cross-platform verification using SED-ML enhances the credibility of computational models.
  • This work strengthens the utility of the BioModels collection for the systems biology community.