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Synthesis and structure-activity relationship studies of urea-containing pyrazoles as dual inhibitors of cyclooxygenase-2 and soluble epoxide hydrolase

机译:含脲的吡唑类化合物作为环氧合酶-2和可溶性环氧化物水解酶的双重抑制剂的合成及构效关系研究

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摘要

A series of dual inhibitors containing a 1,5-diarylpyrazole and a urea were designed, synthesized, and evaluated as novel COX-2/sEH dual inhibitors in vitro using recombinant enzyme assays and in vivo using a lipopolysaccharide (LPS) induced model of pain in rats. The best inhibition potencies and selectivity for sEH and COX-2 over COX-1 were obtained with compounds (21b, 21i, and 21j) in which both the 1,5-diaryl-pyrazole group and the urea group are linked with a three-methylene group. Compound 21i showed the best pharmacokinetic profiles in both mice and rats (higher AUC and longer half-life). Following subcutaneous administration at 10 mg/kg, compound 21i exhibited antiallodynic activity that is more effective than the same dose of either a COX-2 inhibitor (celecoxib) or a sEH inhibitor (t-AUCB) alone, as well as coadministration of both inhibitors. Thus, these novel dual inhibitors exhibited enhanced in vivo antiallodynic activity in a nociceptive behavioral assay.
机译:设计,合成了一系列包含1,5-二芳基吡唑和尿素的双重抑制剂,并在体外使用重组酶测定法评估了其作为新型COX-2 / sEH双重抑制剂,并在体内使用脂多糖(LPS)诱导的疼痛模型对其进行了评估。在大鼠中。化合物(21b,21i和21j)的1,5-二芳基-吡唑基团和脲基团均与三-键连接,从而获得了对sEH和COX-2优于COX-1的最佳抑制能力和选择性。亚甲基。化合物21i在小鼠和大鼠中均显示出最佳的药代动力学特征(较高的AUC和较长的半衰期)。在以10 mg / kg皮下给药后,化合物21i表现出的抗痛觉过敏活性比同等剂量的单独COX-2抑制剂(celecoxib)或sEH抑制剂(t-AUCB)以及两种抑制剂的共同给药更有效。因此,这些新的双重抑制剂在伤害行为分析中表现出增强的体内抗痛觉过敏活性。

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