A new computational workflow to guide personalized drug therapy

Computational models are at the forefront of the pursuit of personalized medicine thanks to their descriptive and predictive abilities. In the presence of complex and heterogeneous data, patient stratification is a prerequisite for effective precision medicine, since disease development is often dri...

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Published inJournal of biomedical informatics Vol. 148; p. 104546
Main Authors Pernice, Simone, Maglione, Alessandro, Tortarolo, Dora, Sirovich, Roberta, Clerico, Marinella, Rolla, Simona, Beccuti, Marco, Cordero, Francesca
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 01.12.2023
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Summary:Computational models are at the forefront of the pursuit of personalized medicine thanks to their descriptive and predictive abilities. In the presence of complex and heterogeneous data, patient stratification is a prerequisite for effective precision medicine, since disease development is often driven by individual variability and unpredictable environmental events. Herein, we present GreatNectorworkflow as a valuable tool for (i) the analysis and clustering of patient-derived longitudinal data, and (ii) the simulation of the resulting model of patient-specific disease dynamics. GreatNectoris designed by combining an analytic strategy composed of CONNECTOR, a data-driven framework for the inspection of longitudinal data, and an unsupervised methodology to stratify the subjects with GreatMod, a quantitative modeling framework based on the Petri Net formalism and its generalizations. To illustrate GreatNectorcapabilities, we exploited longitudinal data of four immune cell populations collected from Multiple Sclerosis patients. Our main results report that the T-cell dynamics after alemtuzumab treatment separate non-responders versus responders patients, and the patients in the non-responders group are characterized by an increase of the Th17 concentration around 36 months. GreatNectoranalysis was able to stratify individual patients into three model meta-patients whose dynamics suggested insight into patient-tailored interventions. [Display omitted]
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ISSN:1532-0464
1532-0480
1532-0480
DOI:10.1016/j.jbi.2023.104546