Antimicrobial Pyridazines: Synthesis, Characterization, Cytotoxicity, Substrate Promiscuity, and Molecular Docking

Chem Biodivers. 2020 Jun;17(6):e2000100. doi: 10.1002/cbdv.202000100. Epub 2020 May 8.

Abstract

A facile and convenient synthesis of new pyridazines suitable for use as antimicrobial agents was reported. The hydrazide intermediate was coupled with various benzaldehydes and/or acetophenones and cyclized instantaneously to afford target pyridazine derivatives. The structures of new pyridazines were confirmed by IR, 1 H- and 13 C-NMR, elemental analysis in addition to representative LC/MS. Antimicrobial activity was screened against 10 bacterial and fungal strains. The new pyridazines showed strong to very strong antibacterial activity against Gram-negative (GNB) bacteria, while none of them showed significant antifungal activity at the same concentration range. Chloro derivatives exhibited the highest antibacterial activity with MICs (0.892-3.744 μg/mL) lower than that of chloramphenicol (2.019-8.078 μg/mL) against E. coli, P. aeruginosa, and S. marcescens. Prediction of ADME parameters, pharmacokinetics, and substrate promiscuity revealed that these new pyridazines could be promising drug candidates. Cytotoxic studies on rat hepatocytes showed how much safe these new pyridazines on living organisms (IC50 >64 μg/mL). MOE docking studies showed a good overlay of these new pyridazines with co-crystallized ligand within an E. coli DNA gyrase subunit B active sites (4KFG).

Keywords: antimicrobial; cytotoxicity; molecular docking; pyridazines; substrate promiscuity.

MeSH terms

  • Animals
  • Anti-Infective Agents / chemical synthesis*
  • Anti-Infective Agents / metabolism
  • Anti-Infective Agents / pharmacology
  • Binding Sites
  • Catalytic Domain
  • Cell Survival / drug effects
  • Cells, Cultured
  • DNA Gyrase / chemistry
  • DNA Gyrase / metabolism
  • Escherichia coli / drug effects
  • Escherichia coli / enzymology
  • Fungi / drug effects
  • Gram-Negative Bacteria / drug effects
  • Half-Life
  • Hepatocytes / cytology
  • Hepatocytes / drug effects
  • Hepatocytes / metabolism
  • Humans
  • Microbial Sensitivity Tests
  • Molecular Docking Simulation*
  • Pyridazines / chemistry*
  • Pyridazines / metabolism
  • Rats
  • Rats, Sprague-Dawley
  • Structure-Activity Relationship
  • Thermodynamics

Substances

  • Anti-Infective Agents
  • Pyridazines
  • DNA Gyrase