Pharmaceutics (Jul 2023)

Model-Informed Precision Dosing Software Tools for Dosage Regimen Individualization: A Scoping Review

  • Paula Del Valle-Moreno,
  • Paloma Suarez-Casillas,
  • Marta Mejías-Trueba,
  • Pablo Ciudad-Gutiérrez,
  • Ana Belén Guisado-Gil,
  • María Victoria Gil-Navarro,
  • Laura Herrera-Hidalgo

DOI
https://doi.org/10.3390/pharmaceutics15071859
Journal volume & issue
Vol. 15, no. 7
p. 1859

Abstract

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Background: Pharmacokinetic nomograms, equations, and software are considered the main tools available for Therapeutic Drug Monitoring (TDM). Model-informed precision dosing (MIPD) is an advanced discipline of TDM that allows dose individualization, and requires a software for knowledge integration and statistical calculations. Due to its precision and extensive applicability, the use of these software is widespread in clinical practice. However, the currently available evidence on these tools remains scarce. Objectives: To review and summarize the available evidence on MIPD software tools to facilitate its identification, evaluation, and selection by users. Methods: An electronic literature search was conducted in MEDLINE, EMBASE, OpenAIRE, and BASE before July 2022. The PRISMA-ScR was applied. The main inclusion criteria were studies focused on developing software for use in clinical practice, research, or modelling. Results: Twenty-eight software were classified as MIPD software. Ten are currently unavailable. The remaining 18 software were described in depth. It is noteworthy that all MIPD software used Bayesian statistical methods to estimate drug exposure and all provided a population model by default, except NONMEN. Conclusions: Pharmacokinetic software have become relevant tools for TDM. MIPD software have been compared, facilitating its selection for use in clinical practice. However, it would be interesting to standardize the quality and validate the software tools.

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