1. Academic Validation
  2. Bioisosteres of the Phenyl Ring: Recent Strategic Applications in Lead Optimization and Drug Design

Bioisosteres of the Phenyl Ring: Recent Strategic Applications in Lead Optimization and Drug Design

  • J Med Chem. 2021 Oct 14;64(19):14046-14128. doi: 10.1021/acs.jmedchem.1c01215.
Murugaiah A M Subbaiah 1 Nicholas A Meanwell 2
Affiliations

Affiliations

  • 1 Department of Medicinal Chemistry, Biocon-Bristol Myers Squibb Research and Development Centre, Biocon Park, Bommasandra IV Phase, Jigani Link Road, Bangalore, Karnataka 560099, India.
  • 2 Department of Small Molecule Drug Discovery, Bristol Myers Squibb Research and Early Development, P.O. Box 4000, Princeton, New Jersey 08543-4000, United States.
Abstract

The benzene moiety is the most prevalent ring system in marketed drugs, underscoring its historic popularity in drug design either as a pharmacophore or as a scaffold that projects pharmacophoric elements. However, introspective analyses of medicinal chemistry practices at the beginning of the 21st century highlighted the indiscriminate deployment of phenyl rings as an important contributor to the poor physicochemical properties of advanced molecules, which limited their prospects of being developed into effective drugs. This Perspective deliberates on the design and applications of bioisosteric replacements for a phenyl ring that have provided practical solutions to a range of developability problems frequently encountered in lead optimization campaigns. While the effect of phenyl ring replacements on compound properties is contextual in nature, bioisosteric substitution can lead to enhanced potency, solubility, and metabolic stability while reducing lipophilicity, plasma protein binding, phospholipidosis potential, and inhibition of Cytochrome P450 enzymes and the hERG channel.

Figures