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首页> 外文期刊>Letters in drug design & discovery >Synthesis and Biological Activity of a New Class of Azetidinones Compounds as Potential HLE Inhibitors
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Synthesis and Biological Activity of a New Class of Azetidinones Compounds as Potential HLE Inhibitors

机译:新型氮杂环丁烷酮化合物作为潜在的HLE抑制剂的合成和生物活性

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Human Leucocyte Elastase (HLE) is a serine protease, which is released from neutrophils in response to inflammatory stimuli. Under normal conditions, the body protects itself from the potential damaging effects from extracellular HLE with the endogenous oti-proteinase inhibitor. Sometime, the action of these endogenous inhibitors seems to be insufficient because there is an unbalance between HLE and antiprotease levels which causes a greater proteolitic activity of this enzyme. This unbalance comes out from an inhibitor decrease, often due to a genetic deficit. The excess HLE, produced by this unbalance, hydrolyzes elastin, the structural protein which gives to the lungs their elasticity, thus initiating and/or contributing to the development of diseases such as pulmonary emphysema, chronic bronchitis, adult respiratory distress syndrome, rheumatoid arthritis, atherosclerosis, cystic fibrosis, chronic bowel disease, and other inflammatory disorders. For these reasons, we are carrying out in a vitro screening programme of new molecular entities's evaluation such as Human Leucocyte Elastase (HLE) inhibitors. In this work we have processed beta-lactams derivatives by examining azetidinone structures, replaced in position 3, in order to find molecules possessing both a satisfactory inhibition of the HLE and a good chemical stability.The results of our experiments indicate that compounds 3d-3e-3f and 3h (450muM) were able to induce a significative inhibition pf HLE (% of inhibition was 30, 45, 57 and 69, respectively, PO.01) indicating that these p-lattamics could be potential inhibitors of HLE.
机译:人白细胞弹性蛋白酶(HLE)是一种丝氨酸蛋白酶,响应于炎症刺激从嗜中性粒细胞释放。在正常情况下,机体可利用内源性oti-蛋白酶抑制剂保护自身免受细胞外HLE的潜在破坏作用。有时,这些内源性抑制剂的作用似乎不足,因为HLE和抗蛋白酶水平之间存在不平衡,导致该酶的蛋白水解活性更高。这种不平衡来自抑制剂的减少,通常是由于遗传缺陷。由这种不平衡产生的过量HLE会水解弹性蛋白(一种使肺具有弹性的结构蛋白),从而引发和/或促进诸如肺气肿,慢性支气管炎,成人呼吸窘迫综合征,类风湿性关节炎,动脉粥样硬化,囊性纤维化,慢性肠病和其他炎症性疾病。由于这些原因,我们正在开展新分子实体评估的体外筛选程序,例如人类白细胞弹性蛋白酶(HLE)抑制剂。在这项工作中,我们通过检查3位取代的氮杂环丁酮结构来加工β-内酰胺衍生物,以发现具有令人满意的HLE抑制作用和良好的化学稳定性的分子。我们的实验结果表明,化合物3d-3e -3f和3h(450μM)能够诱导pf HLE的显着抑制作用(抑制百分比分别为30、45、57和69,PO.01),表明这些对-拉丁美洲可能是HLE的潜在抑制剂。

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