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QSAR Modeling: Where Have You Been? Where Are You Going To?

Journal of Medicinal Chemistry · 2013 · Vol. 57(12) · pp. 4977–5010
Artem CherkasovEugene MuratovDenis FourchesAlexandre VarnekIgor I. BaskinM CroninJohn C. DeardenPaola GramaticaYvonne C. MartinRoberto TodeschiniViviana ConsonniV. Е. Kuz’minRichard D. CramerRomualdo BenigniChihae YangJames F. RathmanLothar TerflothJohann GasteigerAnn M. RichardAlexander Tropsha

Abstract

Quantitative structure-activity relationship modeling is one of the major computational tools employed in medicinal chemistry. However, throughout its entire history it has drawn both praise and criticism concerning its reliability, limitations, successes, and failures. In this paper, we discuss (i) the development and evolution of QSAR; (ii) the current trends, unsolved problems, and pressing challenges; and (iii) several novel and emerging applications of QSAR modeling. Throughout this discussion, we provide guidelines for QSAR development, validation, and application, which are summarized in best practices for building rigorously validated and externally predictive QSAR models. We hope that this Perspective will help communications between computational and experimental chemists toward collaborative development and use of QSAR models. We also believe that the guidelines presented here will help journal editors and reviewers apply more stringent scientific standards to manuscripts reporting new QSAR studies, as well as encourage the use of high quality, validated QSARs for regulatory decision making.

Computational Drug Discovery MethodsMicrobial Natural Products and BiosynthesisMachine Learning in Materials ScienceQuantitative structure–activity relationshipManagement scienceReliability (semiconductor)Computer scienceChemistryBiochemical engineeringData scienceMachine learningEngineering

MeSH terms

Artificial IntelligenceModels, MolecularPharmacokineticsQuantum TheoryToxicologyDrug DesignDatabases, FactualQuantitative Structure-Activity RelationshipAntimicrobial Cationic PeptidesComplex MixturesNanostructuresHistory, 20th CenturyHistory, 21st Century
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