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新型噻唑基腙-哌嗪衍生物的设计、合成、体外及计算机模拟研究作为选择性 MAO-A 抑制剂。

Design, Synthesis, In Vitro and In Silico Studies of New Thiazolylhydrazine-Piperazine Derivatives as Selective MAO-A Inhibitors.

机构信息

Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Anadolu University, Eskişehir 26470, Turkey.

Doping and Narcotic Compounds Analysis Laboratory, Faculty of Pharmacy, Anadolu University, Eskişehir 26470, Turkey.

出版信息

Molecules. 2020 Sep 22;25(18):4342. doi: 10.3390/molecules25184342.

Abstract

Monoamine oxidase (MAO) isoenzymes are very important drug targets among neurological disorders. Herein, novel series of thiazolylhydrazine-piperazine derivatives were designed, synthesized and evaluated for their MAO-A and -B inhibitory activity. The structures of the synthesized compounds were assigned using different spectroscopic techniques such as H-NMR, C-NMR and HRMS. Moreover, the prediction of ADME (Absorption, Distribution, Metabolism, Elimination) parameters for all of the compounds were performed using in silico method. According to the enzyme inhibition results, the synthesized compounds showed the selectivity against MAO-A enzyme inhibition. Compounds , and displayed significant MAO-A inhibition potencies. Among them, compound was found to be the most effective derivative with an IC value of 0.057 ± 0.002 µM. Moreover, it was seen that this compound has a more potent inhibition profile than the reference inhibitors moclobemide (IC = 6.061 ± 0.262 µM) and clorgiline (IC = 0.062 ± 0.002 µM). In addition, the enzyme kinetics were performed for compound and it was determined that this compound had a competitive and reversible inhibition type. Molecular modeling studies aided in the understanding of the interaction modes between this compound and MAO-A. It was found that compound 3e had significant and important binding property.

摘要

单胺氧化酶(MAO)同工酶是神经紊乱中非常重要的药物靶点。在此,设计、合成了一系列新型噻唑基腙哌嗪衍生物,并评估了它们对 MAO-A 和 MAO-B 的抑制活性。采用不同的光谱技术(如 H-NMR、C-NMR 和 HRMS)确定了合成化合物的结构。此外,还使用计算方法预测了所有化合物的 ADME(吸收、分布、代谢、消除)参数。根据酶抑制结果,合成的化合物对 MAO-A 酶抑制具有选择性。化合物 、 和 表现出显著的 MAO-A 抑制活性。其中,化合物 被发现是最有效的衍生物,IC 值为 0.057 ± 0.002 µM。此外,与参比抑制剂吗氯贝胺(IC = 6.061 ± 0.262 µM)和氯吉兰(IC = 0.062 ± 0.002 µM)相比,该化合物具有更强的抑制作用。此外,还对化合物 进行了酶动力学研究,确定该化合物具有竞争性和可逆抑制类型。分子模拟研究有助于理解该化合物与 MAO-A 之间的相互作用模式。发现化合物 3e 具有显著和重要的结合特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e92/7571065/7fa45db0c737/molecules-25-04342-g001.jpg

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