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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Synthesis and Evaluation of Benzophenone Oximes Derivatized with Sydnone as Inhibitors of Secretory Phospholipase A2 with Anti-inflammatory Activity
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Synthesis and Evaluation of Benzophenone Oximes Derivatized with Sydnone as Inhibitors of Secretory Phospholipase A2 with Anti-inflammatory Activity

机译:丁二酮衍生的二苯甲酮肟的合成及其抗炎活性分泌磷脂酶A2抑制剂的评价

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A series of benzophenone oximes appended with sydnone (3a_h) bearing different substituents on aroyl moiety were synthesized to evaluate in vivo and in vitro for their inhibitory activity against purified phospholi_pase A2 (PLA_2) enzymes from snake venom and human inflammatory pleural and ascites fluid. In vivo and in vitro inhibition studies were carried out against PLA2 with respect to the modification of the pharmacophore (substituent) to analyze the specificity for PLA2. The substituent at the aroyl ring was responsible for enhancing the inhibition towards PLA2 enzymes. Most of the newly synthesized compounds inhibit the purified PLA2 en_zyme, and the inhibition was more in hydrophobic and aromatic substituents and less when no such substituents were present. The inhibitory effect of the compounds appeared to be due to the direct interaction of compounds with the enzyme. Inhibition is substrate dependent, and the inhibition competes with the substrate for the same binding site of the enzyme. The most active interacting compound 3h from in vitro inhibition of PLA2 activity showed similar potency in the in vivo neutralization of PLA2 induced mouse paw edema and hemolytic activity. Thus, the in vitro inhibition correlated well with the in vivo inhibition and hence the reported derivatives are therapeutically important anti-inflammatory drugs.
机译:合成了一系列的苯甲酮肟,其在芳香酰基部分上带有在不同取代基上的sydnone(3a_h),在体内和体外评估了它们对来自蛇毒和人类炎症性胸膜和腹水的纯化的磷脂酶A2(PLA_2)酶的抑制活性。针对药效团(取代基)的修饰,针对PLA2进行了体内和体外抑制研究,以分析PLA2的特异性。芳酰基环上的取代基负责增强对PLA2酶的抑制作用。大多数新合成的化合物抑制纯化的PLA2酶,并且疏水和芳族取代基的抑制作用更大,而当不存在此类取代基时,抑制作用则较小。化合物的抑制作用似乎是由于化合物与酶的直接相互作用。抑制作用取决于底物,并且抑制作用与底物竞争酶的相同结合位点。体外抑制PLA2活性最活跃的相互作用化合物3h在体内中和PLA2诱导的小鼠爪水肿和溶血活性方面显示出相似的效力。因此,体外抑制与体内抑制密切相关,因此所报道的衍生物是治疗上重要的抗炎药。

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