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N-monosubstituted thiosemicarbazide as novel Ure inhibitors: synthesis, biological evaluation and molecular docking.

Wei-Wei NiHai-Lian FangYa-Xi YeWei-Yi LiChu-Ping YuanDong-Dong LiShi-Jia MaoSu-E LiQi-Hui ZhuHui OuyangZhu-Ping XiaoHai-Liang Zhu
Published in: Future medicinal chemistry (2020)
Background: Identification of novel Ure inhibitors with high potency has received considerable attention. Methodology & results: Ure inhibition was determined using the indophenol method, the affinities to Ure were estimated via surface plasmon resonance. Seventeen new plus ten known N-monosubstituted thiosemicarbazides were synthesized and identified as novel Ure inhibitors. Out of these compounds, compound b5 shows excellent activity against both crude Ure from Helicobacter pylori (IC50 = 0.04 μM) and Ure in living cell (IC50 = 0.27 μM), with the potency being over 600-fold higher than clinical used drug acetohyroxamic acid, respectively. Surface plasmon resonance demonstrated the high affinity (Kd.#x00A0;= 6.32 nM) of b5 to Ure. Conclusion: This work provides a class of novel and promising Ure inhibitors.
Keyphrases
  • helicobacter pylori
  • molecular docking
  • single cell
  • stem cells
  • molecular dynamics simulations