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首页> 外文期刊>Medicinal chemistry research: an international journal for rapid communications on design and mechanisms of action of biologically active agents >Design, synthesis, and PASS-assisted evaluation of novel 2-substituted benzimidazole derivatives as potent anthelmintics
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Design, synthesis, and PASS-assisted evaluation of novel 2-substituted benzimidazole derivatives as potent anthelmintics

机译:新型2-取代苯并咪唑衍生物作为有效驱虫药的设计,合成和PASS辅助评估

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摘要

A series of novel 2-substituted benzimidazole analogs has been designed and synthesized by connecting the benzimidazole nucleus with variedly substituted chal-cone moieties through an amino linker. The designed analogs were predicted for their biological activity profile through the computer software PASS. The compounds were predicted to have potent anthelmintic activity. These were synthesized and the activity of each compound was evaluated experimentally at the concentrations of 0.1, 0.2, and 0.5 % in terms of mortality time and paralysis time for the helminthes. The experimentally observed activity was found to comply with the PASS predicted activity. All compounds showed dose-dependent activities. The compounds with an electron releasing group at the para position on phenyl ring in the chalcone moiety (8 and 9) were the most active in comparison to those bearing electron withdrawing groups. The corresponding ortho analogs (4 and 5) also revealed good paralytic and lethal activities. The higher activities of 8 and 9 may be attributed to the favorable electronic interactions of the electron releasing groups present at para position of the phenyl ring. Comparative analysis of the Lipinski's parameters and the activities of the compounds revealed all the compounds to comply with the Lipinski's rale of five. Further an optimum hydrophilicity and total polar surface area in the range of 65-80 of the molecule are required for the potent activity, but Molar refractance is not found to have any significant role in determining the anthelmintic activity.
机译:通过经由氨基接头将苯并咪唑核与经不同取代的查耳圆锥部分连接,已设计和合成了一系列新颖的2-取代的苯并咪唑类似物。通过计算机软件PASS,可以预测设计的类似物的生物活性。预计这些化合物具有有效的驱虫活性。合成了这些化合物,并根据杀虫剂的死亡时间和麻痹时间,在浓度为0.1%,0.2%和0.5%的条件下,通过实验评估了每种化合物的活性。发现实验观察到的活性符合PASS预测的活性。所有化合物均显示出剂量依赖性活性。与具有吸电子基团的那些化合物相比,在查耳酮部分(8和9)的苯环对位上具有电子释放基团的化合物活性最高。相应的邻位类似物(4和5)也显示出良好的麻痹和致死活性。 8和9的较高活性可以归因于存在于苯环对位的电子释放基团的有利电子相互作用。对Lipinski参数和化合物活性的比较分析表明,所有化合物均符合Lipinski的5规则。为了有效的活性,还需要分子的65-80范围内的最佳亲水性和总极性表面积,但是未发现摩尔折光率对确定驱虫活性具有重要作用。

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