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Pyridine Scaffolds, Phenols and Derivatives of Azo Moiety: Current Therapeutic Perspectives.

Tehreem TahirMuhammad AshfaqMuhammad SaleemMuhammad RafiqMirza Imran ShahzadKatarzyna Kotwica-MojzychMariusz Mojzych
Published in: Molecules (Basel, Switzerland) (2021)
Synthetic heterocyclic compounds have incredible potential against different diseases; pyridines, phenolic compounds and the derivatives of azo moiety have shown excellent antimicrobial, antiviral, antidiabetic, anti-melanogenic, anti-ulcer, anticancer, anti-mycobacterial, anti-inflammatory, DNA binding and chemosensing activities. In the present review, the above-mentioned activities of the nitrogen-containing heterocyclic compounds (pyridines), hydroxyl (phenols) and azo derivatives are discussed with reference to the minimum inhibitory concentration and structure-activity relationship, which clearly indicate that the presence of nitrogen in the phenyl ring; in addition, the hydroxyl substituent and the incorporation of a diazo group is crucial for the improved efficacies of the compounds in probing different diseases. The comparison was made with the reported drugs and new synthetic derivatives that showed recent therapeutic perspectives made in the last five years.
Keyphrases
  • structure activity relationship
  • dna binding
  • anti inflammatory
  • transcription factor
  • staphylococcus aureus
  • single molecule
  • risk assessment
  • human health