<p>Novel <i>N</i>-arylacetamides <b>2a</b>–<b>f</b> were synthesized based on benzo[<i>d</i>]thiazole scaffold. The compounds <b>2a</b>–<b>c</b> underwent Knoevenagel condensation through green synthetic method with different aromatic aldehydes and pyrazole-7-carbaldehydes delivered the respective arylidenes with efficient yields. Arylidenes <b>4</b> reacted with malononitrile affording the corresponding <i>N</i>-arylpyridones <b>11a</b>–<b>i</b>. Moreover, the reaction of <b>2a</b>–<b>c</b> with each of salicylaldehyde and 5-arylazo salicylaldehydes afforded the unexpected coumarins rather than quinolin-5-ones. The structure of coumarin <b>8</b> was confirmed by density functional theory (DFT) calculations using basis set B3LYP/6-311 G +  + (d,p) to obtain the suitable geometrical structure with molecular orbitals` energies revealing its planar structure and its agreement with experimental data. Besides, the antibacterial activity was tested against different bacterial strains revealing potent activity especially Gram-negative bacteria with excellent minimum inhibition concentration (MIC) value ranging from 31.25 to 250&#xa0;µg/L. Additionally, compounds <b>2c</b> and <b>4m</b> showed enzyme inhibition against dihydrofolate reductase in <i>Escherichia coli</i> with greater potency (IC<sub>50</sub> for <b>2c</b> = 3.796 µM, IC<sub>50</sub> for <b>4m</b> = 2.442&#xa0;µM) than the standard antibiotic trimethoprim (IC<sub>50</sub> = 8.706&#xa0;µM). Investigation of the physicochemical properties of the newly compounds exhibited their better ADME properties that can be developed for the discovery of new antibacterial agents.</p> Graphical Abstract <p></p>

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Synthesis, antibacterial evaluation and in silico studies of novel 2-(benzo[d]thiazol-2-yl)-N-arylacetamides and their derivatives as potential DHFR inhibitors

  • Nadia Hanafy Metwally,
  • Galal Hamza Elgemeie,
  • Aya Ragab Abdelrazek,
  • Salwa Magdy Eldaly

摘要

Novel N-arylacetamides 2af were synthesized based on benzo[d]thiazole scaffold. The compounds 2ac underwent Knoevenagel condensation through green synthetic method with different aromatic aldehydes and pyrazole-7-carbaldehydes delivered the respective arylidenes with efficient yields. Arylidenes 4 reacted with malononitrile affording the corresponding N-arylpyridones 11ai. Moreover, the reaction of 2ac with each of salicylaldehyde and 5-arylazo salicylaldehydes afforded the unexpected coumarins rather than quinolin-5-ones. The structure of coumarin 8 was confirmed by density functional theory (DFT) calculations using basis set B3LYP/6-311 G +  + (d,p) to obtain the suitable geometrical structure with molecular orbitals` energies revealing its planar structure and its agreement with experimental data. Besides, the antibacterial activity was tested against different bacterial strains revealing potent activity especially Gram-negative bacteria with excellent minimum inhibition concentration (MIC) value ranging from 31.25 to 250 µg/L. Additionally, compounds 2c and 4m showed enzyme inhibition against dihydrofolate reductase in Escherichia coli with greater potency (IC50 for 2c = 3.796 µM, IC50 for 4m = 2.442 µM) than the standard antibiotic trimethoprim (IC50 = 8.706 µM). Investigation of the physicochemical properties of the newly compounds exhibited their better ADME properties that can be developed for the discovery of new antibacterial agents.

Graphical Abstract