Department of Pharmaceutical Chemistry, Istanbul Medipol University, School of Pharmacy, Istanbul, Turkey.
Istanbul Medipol University, School of Pharmacy, Department of Pharmaceutical Microbiology, Istanbul, Turkey.
Drug Dev Res. 2018 Dec;79(8):406-425. doi: 10.1002/ddr.21481. Epub 2018 Oct 21.
Hit, Lead & Candidate Discovery After acetylcholine is released into the synaptic cleft, it is reabsorbed or deactivated by acetylcholinesterase (AChE). Studies on Alzheimer's disease (AD) in the mid-20th century proved that cognitive dysfunctions are associated with cholinergic neurotransmission. Drugs, such as tacrine, rivastigmine, donepezil, and galantamine are known as acetylcholinesterase inhibitors. However, these drugs have limited use in advanced AD and dementia. Recently, the anticholinesterase activity of various heterocyclic-framed compounds, including piperazine derivatives, has been investigated, and compounds with similar effects to known drugs have been identified. The aim of this study was to design new donepezil analogs. In this study, 66 original piperazinyl thiazole derivatives were synthesized by the reaction of piperazine N'-benzoyl thioamides and bromoacetophenones to inhibit AChE. Biological activity was measured by the Ellman method. Compounds 35, 38, 40, 45, 57, and 61 showed a high inhibitory effect among the series (80.36%-83.94% inhibition), and donepezil had a 96.42% inhibitory effect. The IC values of compounds 35, 38, and 40, were calculated as 0.9767 μM, 0.9493 μM, and 0.8023 μM, respectively. Compound 45 (IC = 1.122), Compound 57 (IC = 1.2130) and 61 (IC = 0.9193) also exhibited good activity on AChE. Molecular modeling studies were in agreement with the predictions. Trp286, Arg296, and Tyr341 were the key amino acids at the active site. Both donepezil and synthesized compounds seemed to interact with these residues.
当乙酰胆碱被释放到突触间隙后,它会被乙酰胆碱酯酶(AChE)重新吸收或失活。20 世纪中叶对阿尔茨海默病(AD)的研究证明,认知功能障碍与胆碱能神经传递有关。他克林、加兰他敏、多奈哌齐和利凡斯的明等药物被称为乙酰胆碱酯酶抑制剂。然而,这些药物在晚期 AD 和痴呆症中的应用有限。最近,研究人员研究了各种杂环框架化合物(包括哌嗪衍生物)的抗胆碱性,已经发现了具有与已知药物相似作用的化合物。本研究旨在设计新型多奈哌齐类似物。在这项研究中,通过哌嗪 N'-苯甲酰硫代酰胺和溴苯乙酮的反应合成了 66 个原始的哌嗪噻唑衍生物,以抑制 AChE。通过 Ellman 法测量生物活性。在该系列中,化合物 35、38、40、45、57 和 61 表现出较高的抑制作用(80.36%-83.94%抑制),而多奈哌齐的抑制率为 96.42%。化合物 35、38 和 40 的 IC 值分别计算为 0.9767 μM、0.9493 μM 和 0.8023 μM。化合物 45(IC=1.122)、化合物 57(IC=1.2130)和 61(IC=0.9193)对 AChE 也表现出良好的活性。分子建模研究与预测结果一致。色氨酸 286、精氨酸 296 和酪氨酸 341 是活性部位的关键氨基酸。多奈哌齐和合成的化合物似乎都与这些残基相互作用。