Tytuł pozycji:
Real patient and its virtual twin : application of quantitative systems toxicology modelling in the cardiac safety assessment of citalopram
Abstract. A quantitative systems toxicology (QST) model for citalopram was established
to simulate, in silico, a ‘virtual twin’ of a real patient to predict the occurrence of cardiotoxic
events previously reported in patients under various clinical conditions. The QST model
considers the effects of citalopram and its most notable electrophysiologically active primary
(desmethylcitalopram) and secondary (didesmethylcitalopram) metabolites, on cardiac
electrophysiology. The in vitro cardiac ion channel current inhibition data was coupled with
the biophysically detailed model of human cardiac electrophysiology to investigate the
impact of (i) the inhibition of multiple ion currents (IKr, IKs, ICaL); (ii) the inclusion of
metabolites in the QST model; and (iii) unbound or total plasma as the operating drug
concentration, in predicting clinically observed QT prolongation. The inclusion of multiple
ion channel current inhibition and metabolites in the simulation with unbound plasma
citalopram concentration provided the lowest prediction error. The predictive performance
of the model was verified with three additional therapeutic and supra-therapeutic drug
exposure clinical cases. The results indicate that considering only the hERG ion channel
inhibition of only the parent drug is potentially misleading, and the inclusion of active
metabolite data and the influence of other ion channel currents should be considered to
improve the prediction of potential cardiac toxicity. Mechanistic modelling can help bridge
the gaps existing in the quantitative translation from preclinical cardiac safety assessment to
clinical toxicology. Moreover, this study shows that the QST models, in combination with
appropriate drug and systems parameters, can pave the way towards personalised safety
assessment.