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新型 2,2'-(1,1'-联苯)-4,4'-二基双(氧基))二(乙酰肼)双酰肼的合成、生化和计算评估作为双乙酰胆碱酯酶抑制剂。

Synthesis, biochemical and computational evaluations of novel bis-acylhydrazones of 2,2'-(1,1'-biphenyl)-4,4'-diylbis(oxy))di(acetohydrazide) as dual cholinesterase inhibitors.

机构信息

Department of Chemistry, University of Malakand, Chakdara 18800, Dir Lower, Khyber Pakhtunkhwa, Pakistan.

Natural and Medical Sciences Research Centre, University of Nizwa, PO Box 33, 616 Birkat Al Mauz, Nizwa, Oman.

出版信息

Bioorg Chem. 2024 Mar;144:107144. doi: 10.1016/j.bioorg.2024.107144. Epub 2024 Jan 23.

Abstract

A series of twenty-seven bis(acylhydrazones) were successfully synthesized with high yields through a multistep process, which entailed the esterification of hydroxyl groups, hydrazination with an excess of hydrazine hydrate, and subsequent reactions with various carbonyl moieties (aldehydes). In the final stage of synthesis, different chemical species including aromatic, heterocyclic, and aliphatic compounds were integrated into the framework. The resulting compounds were characterized using several spectroscopic techniques (H NMR, C NMR, and mass spectrometry). Their anticholinesterase activities were assessed in vitro by examining their interactions with two cholinesterase enzymes: acetylcholinesterase (AChE) and butyrylcholinesterase (BChE). Among the synthesized hits, compounds 3, 5, 6, 9-12, and 14 exhibited good to moderate inhibition of AChE. Specifically, 10 (IC = 26.3 ± 0.4 μM) and 11 (IC = 28.4 ± 0.5 μM) showed good inhibitory activity against AChE, while 9, 12, 3, and 6 exhibited significant inhibition potential against AChE with IC values ranging from 35.2 ± 1.1 μM to 64.4 ± 0.3 μM. On the other hand, 5 (IC = 22.0 ± 1.1 μM) and 27 (IC = 31.3 ± 1.3 μM) displayed significant, and 19 (IC = 92.6 ± 0.4 μM) showed moderate inhibitory potential for BChE. Notably, 5 and 27 exhibited dual inhibition of AChE and BChE, with greater potency than the standard drug galantamine. The binding patterns of these molecules within the binding cavities of AChE and BChE were anticipated by molecular docking which showed good correlation with our in vitro findings. Further structural optimization of these molecules may yield more potent AChE and BChE inhibitors.

摘要

通过多步反应成功合成了一系列 27 个双(酰腙),产率很高。该多步反应包括羟基酯化、过量水合肼的腙化以及随后与各种羰基部分(醛)的反应。在合成的最后阶段,将不同的化学物质,包括芳香族、杂环和脂肪族化合物,整合到了骨架中。使用几种光谱技术(H NMR、C NMR 和质谱)对所得化合物进行了表征。通过研究它们与两种胆碱酯酶:乙酰胆碱酯酶(AChE)和丁酰胆碱酯酶(BChE)的相互作用,评估了它们的体外抗胆碱酯酶活性。在所合成的化合物中,化合物 3、5、6、9-12 和 14 对 AChE 表现出良好至中等的抑制作用。具体而言,10(IC=26.3±0.4μM)和 11(IC=28.4±0.5μM)对 AChE 表现出良好的抑制活性,而 9、12、3 和 6 对 AChE 表现出显著的抑制潜力,IC 值范围为 35.2±1.1μM 至 64.4±0.3μM。另一方面,5(IC=22.0±1.1μM)和 27(IC=31.3±1.3μM)对 BChE 显示出显著的抑制作用,而 19(IC=92.6±0.4μM)对 BChE 显示出中等的抑制作用。值得注意的是,5 和 27 对 AChE 和 BChE 具有双重抑制作用,其效力强于标准药物加兰他敏。这些分子在 AChE 和 BChE 的结合腔中的结合模式通过分子对接进行了预测,这与我们的体外发现具有良好的相关性。对这些分子进行进一步的结构优化可能会产生更有效的 AChE 和 BChE 抑制剂。

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