Coumarin-Synthetic Methodologies, Pharmacology, and Application as Natural Fluorophore

Top Curr Chem (Cham). 2024 May 9;382(2):16. doi: 10.1007/s41061-024-00462-z.

Abstract

Coumarins are secondary metabolites made up of benzene and α-pyrone rings fused together that can potentially treat various ailments, including cancer, metabolic, and degenerative disorders. Coumarins are a diverse category of both naturally occurring as well as synthesized compounds with numerous biological and therapeutic properties. Coumarins as fluorophores play a key role in fluorescent labeling of biomolecules, metal ion detection, microenvironment polarity detection, and pH detection. This review provides a detailed insight into the characteristics of coumarins as well as their biosynthesis in plants and metabolic pathways. Various synthetic strategies for coumarin core involving both conventional and green methods have been discussed comparing advantages and disadvantages of each method. Conventional methods discussed are Pechmann, Knoevenagel, Perkin, Wittig, Kostanecki, Buchwald-Hartwig, and metal-induced coupling reactions such as Heck and Suzuki, as well as green approaches involving microwave or ultrasound energy. Various pharmacological applications of coumarin derivatives are discussed in detail. The structural features and conditions responsible for influencing the fluorescence of coumarin core are also elaborated.

Keywords: Benzopyrone; Coumarins; Fluorophores; Pechmann; Perkin; α-Pyrone; β-Ketoester.

Publication types

  • Review

MeSH terms

  • Biological Products / chemical synthesis
  • Biological Products / chemistry
  • Coumarins* / chemical synthesis
  • Coumarins* / chemistry
  • Fluorescent Dyes* / chemical synthesis
  • Fluorescent Dyes* / chemistry
  • Humans
  • Molecular Structure

Substances

  • Coumarins
  • Fluorescent Dyes
  • coumarin
  • Biological Products