Synthesis of N-(6-Arylbenzo[d]thiazole-2-acetamide derivatives and their biological activities: An experimental and computational approach

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Abstract

A new series of N-(6-arylbenzo[d]thiazol-2-yl)acetamides were synthesized by C-C coupling methodology in the presence of Pd(0) using various aryl boronic pinacol ester/acids. The newly synthesized compounds were evaluated for various biological activities like antioxidant, haemolytic, antibacterial and urease inhibition. In bioassays these compounds were found to have moderate to good activities. Among the tested biological activities screened these compounds displayed the most significant activity for urease inhibition. In urease inhibition, all compounds were found more active than the standard used. The compound N-(6-(p-tolyl)benzo[d]thiazol-2-yl)acetamide was found to be the most active. To understand this urease inhibition, molecular docking studies were performed. The in silico studies showed that these acetamide derivatives bind to the non-metallic active site of the urease enzyme. Structure-activity studies revealed that H-bonding of compounds with the enzyme is important for its inhibition.

Figures

  • Figure 1. Synthesis of N-(6-bro obenzo[d]thiazol-2-yl)aceta ide (2) and N-(6-aryl-benzo[d]thiazol2-yl)aceta ides 3a–3h.
  • Figure 3. IC50 values of anti-urease activity. Figure 3. IC50 values of anti-urease activity.
  • Figure 3. IC50 values of anti-urease activity.
  • Table 3. Experimental and docking comparative data.
  • Table 4. H-bonding parameters calculated by Mol-Dock Molegero Molecular Viewer 2.5.
  • Figure 7. Cont.
  • Figure 7. Molegro molecular viewer generated sketches between compounds 3a–3h and the active residue of urease at site B. The blue dashed lines represent the H-bonding.
  • Table 5. Nitric oxide scavenging activity of N-(6-arylbenzo[d]thiazole-2-yl)acetamides 3a–3h at 20 µg/mL and 40 µg/mL.

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Gull, Y., Rasool, N., Noreen, M., Altaf, A. A., Musharraf, S. G., Zubair, M., … Zia-Ul-Haq, M. (2016). Synthesis of N-(6-Arylbenzo[d]thiazole-2-acetamide derivatives and their biological activities: An experimental and computational approach. Molecules, 21(3). https://doi.org/10.3390/molecules21030266

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