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Interactions with Aromatic Rings in Chemical and Biological Recognition

Angewandte Chemie International Edition · 2003 · Vol. 42(11) · pp. 1210–1250
Emmanuel A. MeyerRonald K. CastellanoFrançois Diederich

Abstract

Intermolecular interactions involving aromatic rings are key processes in both chemical and biological recognition. Their understanding is essential for rational drug design and lead optimization in medicinal chemistry. Different approaches-biological studies, molecular recognition studies with artificial receptors, crystallographic database mining, gas-phase studies, and theoretical calculations-are pursued to generate a profound understanding of the structural and energetic parameters of individual recognition modes involving aromatic rings. This review attempts to combine and summarize the knowledge gained from these investigations. The review focuses mainly on examples with biological relevance since one of its aims it to enhance the knowledge of molecular recognition forces that is essential for drug development.

Molecular Sensors and Ion DetectionChemical Reaction MechanismsCrystallography and molecular interactionsMolecular recognitionAromaticityChemistryRelevance (law)Intermolecular forceBiochemical engineeringComputer scienceNanotechnologyMoleculeMaterials science

MeSH terms

CationsHydrocarbons, AromaticHydrogen BondingProteinsSulfurThermodynamics
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