In-silico, Antioxidant and Antiepileptic Effect of N(2,3-methylenedioxy-4benzoyloxy-phenthylamine)-3,4-dimethyl-1, propanoamide Derivatives

IF 0.6 4区 化学 Q4 CHEMISTRY, MULTIDISCIPLINARY
G. A. M. G A Miana, M. K. M Kanwal, S. M. S Maqsood, Z. T. Z Tariq, F. A. S. F Ali Shah, H. S. H Saddam, M. U. F. A. A. U. K. M Umar Farooq and Arif U Khan
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Abstract

Epilepsy is a severe neurological illness that affects millions of people the globally and is characterized by unpredicted and intermittent seizures.This research aimed to investigate the antiepileptic and antioxidant properties of papaverine derivatives using in-silico, in-vitro, and in-vivo methods.Epileptic seizure was induced in Swiss albino mice of either gender by administering PTZ (pentylenetetrazol). The antioxidant potential of test compounds was computed using previously published DPPH assay methods with minor modifications, while In-silico experiments were conducted using Auto-dock Vina (1.5.6) software and post dock analysis was completed using Discovery Studio Visualizer. The results showed that both compounds have strong antioxidant potential, with a noticeable change in color when compared to ascorbic acid as a control, and very low mortality when anti-epileptic potential was observed. The development of seizures was greatly delayed at first, but after 30 minutes of PTZ, they were completely gone. Both synthesized derivatives also comply the andquot;Lipinskiand#39;s rule of 5andquot;, which states that after structural alterations, extensive investigations, and trials, the chemical products would be evaluated for epilepsy management in the future In-silico investigations demonstrated that ligands with sufficient hydrogen bonds, pi-pi bonds, and Vander-Waals forces have a suitable propensity to engage with the binding pocket of selected protein targets. The current investigation of papaverine derivatives and their binding affinities against gamma aminobutyric acid (GABA) protein may have a vital function in epilepsy aetiology, according to the results of the studies. H1 and H2 were further verified in vivo for their anticonvulsant and antioxidant therapeutic potential. This could lead to more research into neurological problems.
N(2,3-亚甲基二氧基-4苯甲酰氧基-苯胺)-3,4-二甲基-1,丙酰胺衍生物的硅抗氧化和抗癫痫作用
癫痫是一种严重的神经系统疾病,影响着全球数百万人,其特征是不可预测的间歇性癫痫发作。本研究旨在通过硅内、体外和体内方法研究罂粟碱衍生物的抗癫痫和抗氧化性能。给药PTZ(戊四氮)诱导瑞士白化小鼠癫痫发作。测试化合物的抗氧化潜力使用先前发表的DPPH测定方法进行了轻微修改,而In-silico实验使用Auto-dock Vina(1.5.6)软件进行,并使用Discovery Studio Visualizer完成对接后分析。结果表明,这两种化合物都具有很强的抗氧化潜力,与抗坏血酸作为对照相比,其颜色变化明显,并且在观察抗癫痫潜力时死亡率非常低。癫痫发作的发展在一开始被大大推迟,但在30分钟的PTZ后,它们完全消失了。这两种合成的衍生物也符合“利平斯基和5”规则,即经过结构改变、广泛的研究和试验后,化学产品将在未来用于癫痫治疗的评估。硅研究表明,具有足够氢键、pi-pi键和范德-瓦尔斯力的配体具有与选定蛋白质靶点结合的合适倾向。根据研究结果,目前对罂粟碱衍生物及其与γ氨基丁酸(GABA)蛋白结合亲和力的研究可能在癫痫病因学中具有重要作用。在体内进一步验证了H1和H2的抗惊厥和抗氧化治疗潜力。这可能会导致对神经系统问题的更多研究。
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来源期刊
CiteScore
1.30
自引率
14.30%
发文量
41
审稿时长
3.4 months
期刊介绍: This journal covers different research areas in the field of Chemistry. These include; Analytical Chemistry, Applied Chemistry, Biochemistry, Environmental Chemistry, Industrial Chemistry, Inorganic Chemistry, Organic Chemistry and Physical Chemistry. The journal publishes full length articles and Reviews from researchers in academia in addition to featuring comments. Chemical Research presents short, concise and critical articles offering easy-to-read overviews of basic research and applications in all areas of chemistry.
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