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新型基于苯并咪唑-2-硫醇的多靶点杂环化合物作为潜在的抗自由基和抗阿尔茨海默病药物。

New multitarget directed benzimidazole-2-thiol-based heterocycles as prospective anti-radical and anti-Alzheimer's agents.

作者信息

Latif Abdul, Bibi Samina, Ali Sardar, Ammara Ammara, Ahmad Manzoor, Khan Ajmal, Al-Harrasi Ahmed, Ullah Farhat, Ali Mumtaz

机构信息

Department of Chemistry, University of Malakand, Chakdara, Khyber Pakhtunkhwa, Pakistan.

UoN Chair of Oman's Medicinal Plants and Marine Natural Products, University of Nizwa, Nizwa, Sultanate of Oman.

出版信息

Drug Dev Res. 2021 Apr;82(2):207-216. doi: 10.1002/ddr.21740. Epub 2020 Sep 8.

Abstract

A series of new heterocycles (4-18) was synthesized by the structural modification of benzimidazole-2-thiol (BT, 2-MBI). The structures of the synthesized compounds were confirmed with the help of high-resolution mass spectrometry (HRMS) and HNMR spectroscopy. High inhibitions of the oxidants such as ABTS and DPPH were observed for compounds 9 [IC (s) = 167.4 μM (ABTS), 139.5 μM (DPPH)], 10 [IC (s) = 186.5 μM (ABTS), 155.4 μM (DPPH)], 11 [IC (s) = 286.1 μM (ABTS), 189.1 μM (DPPH)], 12 [IC (s) = 310.8 μM (ABTS), 162.2 μM (DPPH)], 14 [IC (s) = 281.3 μM (ABTS), 205.7 μM (DPPH)], 15 [IC (s) = 284.1 μM (ABTS), 177.3 μM (DPPH)], and 16 [IC (s) = 344.7 μM (ABTS), 270.2 μM (DPPH)] as compared with Ascorbic acid [IC (s) = 340.9 μM (ABTS), 164.3 μM (DPPH)]. The anti-Alzheimer's activity was performed in vitro against cholinesterase enzymes (AChE, BChE). Compound 11 was able to show significant inhibitions [IC (s) = 121.2 μM (AChE), 38.3 μM (BChE)] as against that of galantamine [IC (s) = 139.4 μM (AChE), 40.3 μM (BChE)]. Compound 14 was found as a very good inhibitor of butyrylcholinesterase (IC = 35.4 μM) as compared with standard galantamine. Molecular docking was further performed to investigate the mechanism of anticholinesterase activity.

摘要

通过对苯并咪唑-2-硫醇(BT,2-甲基苯并咪唑)进行结构修饰,合成了一系列新的杂环化合物(4-18)。借助高分辨率质谱(HRMS)和核磁共振氢谱(HNMR)对合成化合物的结构进行了确认。与抗坏血酸[IC(s)= 340.9 μM(ABTS),164.3 μM(DPPH)]相比,观察到化合物9 [IC(s)= 167.4 μM(ABTS),139.5 μM(DPPH)]、10 [IC(s)= 186.5 μM(ABTS),155.4 μM(DPPH)]、11 [IC(s)= 286.1 μM(ABTS),189.1 μM(DPPH)]、12 [IC(s)= 310.8 μM(ABTS),162.2 μM(DPPH)]、14 [IC(s)= 281.3 μM(ABTS),205.7 μM(DPPH)]、15 [IC(s)= 284.1 μM(ABTS),177.3 μM(DPPH)]和16 [IC(s)= 344.7 μM(ABTS),270.2 μM(DPPH)]对ABTS和DPPH等氧化剂具有较高的抑制作用。针对胆碱酯酶(AChE,BChE)进行了体外抗阿尔茨海默病活性研究。与加兰他敏[IC(s)= 139.4 μM(AChE),40.3 μM(BChE)]相比,化合物11能够表现出显著的抑制作用[IC(s)= 121.2 μM(AChE),38.3 μM(BChE)]。与标准加兰他敏相比,发现化合物14是丁酰胆碱酯酶的一种非常好的抑制剂(IC = 35.4 μM)。进一步进行了分子对接以研究抗胆碱酯酶活性的机制。

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