College of Natural Science, Department of Biological Sciences, Kongju National University, Gongju 32588, South Korea.
College of Natural Science, Department of Biological Sciences, Kongju National University, Gongju 32588, South Korea; Department of Chemistry, Government College University, Lahore 54000, Pakistan.
J Theor Biol. 2018 Dec 7;458:169-183. doi: 10.1016/j.jtbi.2018.09.018. Epub 2018 Sep 19.
A new series of multifunctional amides has been synthesized having moderate enzyme inhibitory potentials and mild cytotoxicity. 2-Furyl(1-piperazinyl)methanone (1) was coupled with 3,5-dichloro-2-hydroxybenzenesulfonyl chloride (2) to form {4-[(3,5-dichloro-2-hydroxyphenyl)sulfonyl]-1-piperazinyl}(2-furyl)methanone (3). Different elecrophiles were synthesized by the reaction of various un/substituted anilines (4a-o) with 2-bromoacetylbromide (5), 2‑bromo‑N-(un/substituted-phenyl)acetamides (6a-o). Further, equimolar ratios of 3 and 6a-o were allowed to react in the presence of KCO in acetonitrile to form desired multifunctional amides (7a-o). The structural confirmation of all the synthesized compounds was carried out by their EI-MS, IR, H NMR and C NMR spectral data. Enzyme inhibition activity was performed against acetyl and butyrylcholinestrase enzymes, whereby 7e showed very good activity having IC value of 5.54 ± 0.03 and 9.15 ± 0.01 μM, respectively, relative to eserine, a reference standard. Hemolytic activity of the molecules was checked to asertain their cytotoxicity towards red blood cell membrance and it was observed that most of the compounds were not toxic up to certain range. Moreover, chemoinformatic protepties and docking simulation results also showed the significance of 7e as compared to other compounds. Based on in vitro and in silico analysis 7e could be used as a template for the development of new drugs against Alzheimer's disease.
已合成了一系列具有中等酶抑制潜力和低细胞毒性的多功能酰胺。2-呋喃基(1-哌嗪基)甲酮(1)与 3,5-二氯-2-羟基苯磺酰氯(2)偶联形成{4-[(3,5-二氯-2-羟基苯基)磺酰基]-1-哌嗪基}(2-呋喃基)甲酮(3)。通过各种未取代苯胺(4a-o)与 2-溴乙酰溴(5)、2-溴-N-(未取代-苯基)乙酰胺(6a-o)的反应合成了不同的亲电试剂。进一步,在乙腈中,使等摩尔比的 3 和 6a-o 在 KCO 的存在下反应,形成所需的多功能酰胺(7a-o)。所有合成化合物的结构确证均通过 EI-MS、IR、H NMR 和 C NMR 光谱数据进行。对乙酰和丁酰胆碱酯酶进行了酶抑制活性测试,其中 7e 表现出非常好的活性,其 IC 值分别为 5.54±0.03 和 9.15±0.01 μM,相对于作为参比标准的依色林。检查了分子的溶血活性以确定它们对红细胞膜的细胞毒性,观察到大多数化合物在一定范围内没有毒性。此外,化学信息学特性和对接模拟结果也表明 7e 与其他化合物相比具有重要意义。基于体外和计算分析,7e 可作为开发针对阿尔茨海默病的新药的模板。