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Identification of a Prenyl Chalcone as a Competitive Lipoxygenase Inhibitor: Screening Biochemical Evaluation and Molecular Modeling Studies

机译:鉴定戊酮作为竞争性脂氧合酶抑制剂:筛选生化评估和分子建模研究

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摘要

Cyclooxygenase (COX) and lipoxygenase (LOX) are key targets for the development of new anti-inflammatory agents. LOX, which is involved in the biosynthesis of mediators in inflammation and allergic reactions, was selected for a biochemical screening campaign to identify LOX inhibitors by employing the main natural product library of Brazilian biodiversity. Two prenyl chalcones were identified as potent inhibitors of LOX-1 in the screening. The most active compound, (E)-2-O-farnesyl chalcone, decreased the rate of oxygen consumption to an extent similar to that of the positive control, nordihydroguaiaretic acid. Additionally, studies on the mechanism of the action indicated that (E)-2-O-farnesyl chalcone is a competitive LOX-1 inhibitor. Molecular modeling studies indicated the importance of the prenyl moieties for the binding of the inhibitors to the LOX binding site, which is related to their pharmacological properties.
机译:环氧氧酶(COX)和脂氧合酶(LOX)是开发新的抗炎剂的关键靶标。选择涉及炎症和过敏反应中介质的生物合成的LOX,用于生化筛查运动,通过使用巴西生物多样性的主要天然产品文库来鉴定LOX抑制剂。在筛选中鉴定出两种戊酮的戊酮作为LOX-1的有效抑制剂。最活跃的化合物(e)-2-o-法呢尼基醌,降低氧气消耗速率与阳性对照,Nordihyduaiaretic acid的程度相似。另外,对动作机制的研究表明(E)-2-O-法尼基醌是竞争性LOX-1抑制剂。分子建模研究表明戊烯部分对抑制剂与LOX结合位点的结合的重要性,其与其药理学特性有关。

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