Skin Doctor: Machine Learning Models for Skin Sensitization Prediction that Provide Estimates and Indicators of Prediction Reliability

  • Anke Wilm (Corresponding author)
  • , Conrad Stork (Corresponding author)
  • , Christoph Bauer (Corresponding author)
  • , Andreas Schepky (Corresponding author)
  • , Jochen Kühnl
  • , Johannes Kirchmair

Publications: Contribution to journalArticlePeer Reviewed

Abstract

The ability to predict the skin sensitization potential of small organic molecules is of high importance to the development and safe application of cosmetics, drugs and pesticides. One of the most widely accepted methods for predicting this hazard is the local lymph node assay (LLNA). The goal of this work was to develop in silico models for the prediction of the skin sensitization potential of small molecules that go beyond the state of the art, with larger LLNA data sets and, most importantly, a robust and intuitive definition of the applicability domain, paired with additional indicators of the reliability of predictions. We explored a large variety of molecular descriptors and fingerprints in combination with random forest and support vector machine classifiers. The most suitable models were tested on holdout data, on which they yielded competitive performance (Matthews correlation coefficients up to 0.52; accuracies up to 0.76; areas under the receiver operating characteristic curves up to 0.83). The most favorable models are available via a public web service that, in addition to predictions, provides assessments of the applicability domain and indicators of the reliability of the individual predictions.
Original languageEnglish
Article number4833
Number of pages23
JournalInternational Journal of Molecular Sciences
Volume20
Issue number19
DOIs
Publication statusPublished - Oct 2019
Externally publishedYes

Austrian Fields of Science 2012

  • 106005 Bioinformatics
  • 301207 Pharmaceutical chemistry

Keywords

  • POTENCY
  • applicability domain
  • chemical space
  • cosmetics
  • drugs
  • in silico models
  • local lymph node assay (LLNA)
  • machine learning
  • pesticides
  • prediction
  • skin sensitization potential
  • Drugs
  • Local lymph node assay (LLNA)
  • Skin sensitization potential
  • Pesticides
  • Prediction
  • In silico models
  • Chemical space
  • Machine learning
  • Cosmetics
  • Applicability domain

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