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Chemometric Strategies for Fully Automated Interpretive Method Development in Liquid Chromatography

  • Tijmen S. Bos
  • , Jim Boelrijk
  • , Stef R.A. Molenaar
  • , Brian Van 'T Veer
  • , Leon E. Niezen
  • , Denice Van Herwerden
  • , Saer Samanipour
  • , Dwight R. Stoll
  • , Patrick Forré
  • , Bernd Ensing
  • , Govert W. Somsen
  • , Bob W.J. Pirok*
  • *Corresponding author for this work

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

The majority of liquid chromatography (LC) methods are still developed in a conventional manner, that is, by analysts who rely on their knowledge and experience to make method development decisions. In this work, a novel, open-source algorithm was developed for automated and interpretive method development of LC(-mass spectrometry) separations ("AutoLC"). A closed-loop workflow was constructed that interacted directly with the LC system and ran unsupervised in an automated fashion. To achieve this, several challenges related to peak tracking, retention modeling, the automated design of candidate gradient profiles, and the simulation of chromatograms were investigated. The algorithm was tested using two newly designed method development strategies. The first utilized retention modeling, whereas the second used a Bayesian-optimization machine learning approach. In both cases, the algorithm could arrive within 4-10 iterations (i.e., sets of method parameters) at an optimum of the objective function, which included resolution and analysis time as measures of performance. Retention modeling was found to be more efficient while depending on peak tracking, whereas Bayesian optimization was more flexible but limited in scalability. We have deliberately designed the algorithm to be modular to facilitate compatibility with previous and future work (e.g., previously published data handling algorithms).

Original languageEnglish
Pages (from-to)16060–16068
Number of pages9
JournalAnalytical chemistry
Volume94
Issue number46
Early online date1 Nov 2022
DOIs
Publication statusPublished - 22 Nov 2022

Bibliographical note

Publisher Copyright:
© 2022 The Authors. Published by American Chemical Society.

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