Molecular modeling, synthesis, antibacterial and cytotoxicity evaluation of sulfonamide derivatives of benzimidazole, indazole, benzothiazole and thiazole

Bioorg Med Chem. 2018 Jul 23;26(12):3414-3428. doi: 10.1016/j.bmc.2018.05.015. Epub 2018 May 11.

Abstract

A new series of heterocyclic molecules bearing sulfonamide linkage has been synthesized and screened for antibacterial activity. During antibacterial screening using broath dilution method, molecules were found to be highly active (MIC value 50-3.1 µg/mL) against different human pathogens, namely B. cerus, S. aureus, E. coli and P. aeruginosa, and most effective against E. coli. A great synergistic effect was observed during determination of FIC where molecules were used in combination with reference drugs chloramphenicol and sulfamethoxazole. The MIC value of the combination - varying concentration of test compounds and ½ MIC of reference drugs or varying concentration of reference drugs and ½ MIC of test compounds, was reduced up to 1/4 or 1/32 of the original value, indicating thereby the combination was 4-32 times more potent than the test molecule. The molecules also showed low degree of cytotoxicity against PBM, CEM and VERO cell lines. The results positively indicated towards the development of lead antibacterials using the combination approach.

Keywords: Cytotoxicity; Fractional inhibitory concentration (FIC); Minimum inhibitory concentration (MIC); Molecular docking; Sulfonamides.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Anti-Bacterial Agents / chemical synthesis*
  • Anti-Bacterial Agents / chemistry
  • Anti-Bacterial Agents / pharmacology
  • Bacterial Proteins / chemistry
  • Bacterial Proteins / metabolism
  • Benzimidazoles / chemistry
  • Benzothiazoles / chemistry
  • Binding Sites
  • Catalytic Domain
  • Cell Survival / drug effects
  • Chlorocebus aethiops
  • Drug Design
  • Gram-Negative Bacteria / drug effects
  • Gram-Positive Bacteria / drug effects
  • Indazoles / chemistry
  • Microbial Sensitivity Tests
  • Molecular Docking Simulation*
  • Structure-Activity Relationship
  • Sulfamethoxazole / pharmacology
  • Sulfonamides / chemical synthesis
  • Sulfonamides / chemistry*
  • Thiazoles / chemistry
  • Vero Cells

Substances

  • Anti-Bacterial Agents
  • Bacterial Proteins
  • Benzimidazoles
  • Benzothiazoles
  • Indazoles
  • Sulfonamides
  • Thiazoles
  • benzothiazole
  • Sulfamethoxazole