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An Alternative Method for the Synthesis of Tetraketones and their Lipoxygenase Inhibiting and Antioxidant Properties

机译:四酮的合成及其脂氧合酶抑制和抗氧化性能的另一种方法

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A new method for the preparation of tetraketones 2-22 has been developed by using tetraethyl ammonium bromide (Et4N+Br¯) as a new reagent for condensation of dimedone (5,5-dimethyl cyclohexane-1,3- dione) and aldehydes. These compounds showed varying degrees of lipoxygenase inhibitory and antioxidant activities ranging between 7.8-198.0 and 33.6-248.0 μM, respectively. Compound 19 proved to be most active lipoxygenase inhibitor with IC50 value 7.8 μM in the present series. Out of twenty two tetraketones, four other compounds i.e. 3 (IC50 = 16.3 μM), 8 (IC50 = 21.3 μM), 11 (IC50 = 17.5 μM), 22 (IC50 = 12.5 μM) were also found to have excellent lipoxygenase inhibition, if compared to baicalein (IC50 = 22.4 μM) used as standard. On the other hand only compound 19 (IC50 = 33.6 μM) was found to be most antioxidant, if compared to standard t-butyl-4-hydroxyanisole (IC50 = 44.7 μM).
机译:通过使用四乙基溴化铵(Et4N + Br)作为二甲酮(5,5-二甲基环己烷-1,3-二酮)和醛缩合的新试剂,开发了一种制备四酮2-22的新方法。这些化合物显示出不同程度的脂氧合酶抑制和抗氧化活性,分别在7.8-198.0和33.6-248.0μM之间。在本系列中,化合物19被证明是最具活性的脂氧合酶抑制剂,IC50值为7.8μM。在22个四酮中,还发现其他4种化合物具有出色的脂氧合酶抑制作用,即3(IC50 = 16.3μM),8(IC50 = 21.3μM),11(IC50 = 17.5μM),22(IC50 = 12.5μM),与黄ba素(IC50 = 22.4μM)进行比较。另一方面,与标准叔丁基-4-羟基茴香醚(IC50 = 44.7μM)相比,仅发现化合物19(IC50 = 33.6μM)是最抗氧化剂。

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