diflapolin was designed, synthesized, and characterized by 1H NMR, 13C NMR, and elemental analysis. These novel compounds were biologically evaluated for their inhibitory activity against sEH and FLAP. Molecular modeling tools were applied to analyze structure–activity relationships (SAR) on both targets. Results show that even small modifications on the lead compound diflapolin markedly influence the inhibitory
                                    设计,合成并通过1 H NMR,13 C NMR和元素分析表征了一系列有效的双可溶性环氧
水解酶(sEH)/ 5-脂氧合酶激活蛋白(F
LAP)
抑制剂双黄素衍
生物。从
生物学角度评估了这些新型化合物对sEH和F
LAP的抑制活性。分子建模工具被应用于分析两个目标上的构效关系(
SAR)。结果表明,即使对先导化合物双黄精蛋白进行很小的修饰也会显着影响其抑制潜力,尤其是对F
LAP而言,表明
SAR非常窄。