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January 24, 202616 citations

Metabolic Stability of Fluorinated Small Molecules: A Physical Organic Chemistry Perspective.

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PBPankaj BhattaraiTTTrevor A. TrombleyRARyan A. Altman

Key Points

  • To explore how fluorine incorporation enhances the metabolic stability of drug molecules beyond mere bond strength considerations.
  • Review of mechanisms of drug metabolism
  • Analysis of structure-metabolism relationships
  • Evaluation of drug-metabolizing enzyme interactions
  • Connections between fluorinated substituents and improved metabolic profiles are established.
  • Mechanistic explanations for enhanced drug stability provided.
  • Insights into medicinal chemistry decision-making are discussed.

Abstract

The incorporation of fluorine and fluorinated motifs into medicinally relevant scaffolds can improve the metabolic and pharmacokinetic properties (DMPK) of drug molecules. Typically, this phenomenon is attributed to differences in C-H vs C-F bond strengths, though such an explanation ignores accepted mechanisms of drug metabolism and how fluorine and fluorinated substituents perturb the physicochemical properties of small molecules. Instead of relying on bond strengths, this perspective will review established mechanisms of drug metabolism and provide a mechanistic rationale for the improved metabolic profiles achieved by fluorinating drug candidates. This discussion will connect observed trends in structure-metabolism relationships with known mechanistic features of relevant drug-metabolizing enzymes, with the ultimate goal of improving medicinal chemistry decision-making.

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Cite This Study

Bhattarai et al. (2026) studied this question.

synapsesocial.com/papers/69746050bb9d90c67120a30bhttps://doi.org/10.1021/acs.jmedchem.5c02359
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