Design, synthesis, in-vitro biological profiling and molecular docking of some novel oxazolones and imidazolones exhibiting good inhibitory potential against acetylcholine esterase.

IF 2.7 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Iqra Saleem Naz Babari, Muhammad Islam, Hamid Saeed, Humaira Nadeem, Fariha Imtiaz, Awais Ali, Nusrat Shafiq, Abdulaziz Alamri, Rabia Zahid, Imran Ahmad
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Abstract

Heterocyclic compounds with oxazole and imidazole rings in their structure have disclosed momentous biological aptitudes. Taking into account their superlative attributes, the present study was designed to introduce a new synthetic scheme to make new derivatives with tremendous futuristic pharmacological potentialities. Series of Oxazolones were synthesized by using substituted benzaldehyde with benzyl halides to produce respective benzaldehyde derivatives 1 (a-d) which further reacted with hippuric acid to yield oxazolones 2 (a-e). Newly synthesized oxazolones then reacted with 4-chloroaniline to yield corresponding imidazolones 3 (a-e). All the compounds were characterized by using FTIR and NMR spectroscopic techniques. Docking studies of Compounds were conducted using AutoDock Vina and analyzed with PYMOL. All synthesized oxazolone and imidazolone derivatives exhibited antioxidant potential, demonstrated by their IC50 values compared to ascorbic acid standard. Oxazolone derivatives (2a-2e) exhibited good acetyl cholinesterase inhibitory potential whereas Imidazolone series did not show significant inhibition as shown by their IC50 values compared to donepezil as a standard. Docking studies of all compounds against acetylcholinesterase demonstrated favorable binding affinity, indicating their potential for further in-vivo studies. It is notable that novel compounds of both oxazolones and Imidazolone series exhibited antioxidant potential with maximum percentage inhibition of 75.9 (IC50 12.9 ± 0.0573 µM/mL) by compound 2d while compound 2a showed AChE inhibitory potential with maximum %age inhibition of 75.49 (IC50 7.8 ± 0.0218 µM/mL).

一些对乙酰胆碱酯酶具有良好抑制潜力的新型噁唑酮类和咪唑酮类化合物的设计、合成、体外生物分析和分子对接。
结构中含有噁唑和咪唑环的杂环化合物具有重要的生物学特性。考虑到它们的卓越特性,本研究旨在引入一种新的合成方案,以制造具有巨大未来药理潜力的新衍生物。通过使用取代的苯甲醛与苄基卤化物合成了一系列恶唑酮类化合物,生成了相应的苯甲醛衍生物 1(a-d),这些衍生物进一步与喜树酸反应生成了恶唑酮 2(a-e)。新合成的噁唑酮与 4-氯苯胺反应生成相应的咪唑酮 3(a-e)。所有化合物都通过傅立叶变换红外光谱和核磁共振光谱技术进行了表征。使用 AutoDock Vina 对化合物进行了 Docking 研究,并使用PYMOL 进行了分析。与抗坏血酸标准品相比,所有合成的恶唑酮和咪唑酮衍生物的 IC50 值均显示出抗氧化潜力。恶唑酮衍生物(2a-2e)表现出良好的乙酰胆碱酯酶抑制潜力,而咪唑酮系列则没有表现出明显的抑制作用,与标准物质多奈哌齐相比,其 IC50 值并不明显。所有化合物与乙酰胆碱酯酶的 Docking 研究都显示出良好的结合亲和力,表明它们具有进一步体内研究的潜力。值得注意的是,噁唑酮和咪唑酮系列的新型化合物都表现出了抗氧化潜力,化合物 2d 的最大抑制百分比为 75.9(IC50 12.9 ± 0.0573 µM/mL),而化合物 2a 则表现出了乙酰胆碱酯酶抑制潜力,最大抑制百分比为 75.49(IC50 7.8 ± 0.0218 µM/mL)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Biomolecular Structure & Dynamics
Journal of Biomolecular Structure & Dynamics 生物-生化与分子生物学
CiteScore
8.90
自引率
9.10%
发文量
597
审稿时长
2 months
期刊介绍: The Journal of Biomolecular Structure and Dynamics welcomes manuscripts on biological structure, dynamics, interactions and expression. The Journal is one of the leading publications in high end computational science, atomic structural biology, bioinformatics, virtual drug design, genomics and biological networks.
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