Catozzi_2026_Int.J.Mol.Sci_27_

Reference

Title : Drug Safety Assessment Based on Target Affinity, Drug Exposure and Plasma Protein Binding: Drug-Induced Cardiotoxicity from a Translational Pharmacology Perspective - Catozzi_2026_Int.J.Mol.Sci_27_
Author(s) : Catozzi S , Sips F , Totis N , Bisotti MA , Stathopoulos S , Torchia M , Emili L , Carbone V , Baker C , Mahoney JM , Roshammar D
Ref : Int J Mol Sci , 27 : , 2026
Abstract :

Cardiac safety assessment is an integral part of drug discovery and development. Drug candidates that adversely affect cardiac or hemodynamic function should be discontinued early unless a favorable benefit-risk ratio for patients can be justified. In this hypothesis-generating work, we aimed to develop a conceptual framework for informing early safety risk assessment based on in vitro drug affinities to pharmacological targets. For illustration, we used the drug-induced cardiotoxicity rank (DICTrank) data comprising 1318 drugs with cardiac safety concerns according to FDA labeling. The data was enriched with information on affinity to the most plausible mechanistic targets, clinical drug exposure, and human plasma protein binding. We descriptively identified 18 target classes potentially associated with elevated cardiovascular risk: potassium channels (accounting alone for 20% of the 'most concern' safety group); adrenergic, dopamine, serotonin, androgen, sex hormone, and opioid receptors; cyclooxygenase; sodium and calcium channels; muscarinic and glucocorticoid receptors; phosphodiesterase; topoisomerase; angiotensin-converting enzyme; angiotensin II type 1 receptor; monoamine transporters, and acetylcholinesterase. Overall, 80% of the 'most concern' drugs compared with only 12% of the 'no concern' drugs were associated with these targets in this exploratory descriptive analysis. Concentration-response analyses revealed differences in target potency and free drug exposure that appeared associated with variability in the severity of cardiotoxicity among drugs acting on the same target. This framework demonstrates how in vitro data can be used to benchmark new compounds early in development, enabling the timely discontinuation of candidates associated with substantial risk.

PubMedSearch : Catozzi_2026_Int.J.Mol.Sci_27_
PubMedID: 42196540

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Citations formats

Catozzi S, Sips F, Totis N, Bisotti MA, Stathopoulos S, Torchia M, Emili L, Carbone V, Baker C, Mahoney JM, Roshammar D (2026)
Drug Safety Assessment Based on Target Affinity, Drug Exposure and Plasma Protein Binding: Drug-Induced Cardiotoxicity from a Translational Pharmacology Perspective
Int J Mol Sci 27 :

Catozzi S, Sips F, Totis N, Bisotti MA, Stathopoulos S, Torchia M, Emili L, Carbone V, Baker C, Mahoney JM, Roshammar D (2026)
Int J Mol Sci 27 :