N′-芳基芳基-4-硝基苯并肼的合成、分子对接及体外抑菌研究

D. Bhosale, Suraj N. Mali, B. Thorat, Swati S Wavhal, D. Bhagat, R. M. Borade
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引用次数: 2

摘要

背景结核分枝杆菌(Mtb)是导致结核病发展(TB)的有机体。2019年,全球有1000万人感染结核病,每年有140万人死于结核病(世界卫生组织,2021年)。肼类药物已被证明对结核分枝杆菌的复制具有杀菌作用。目的:采用4-硝基苯并肼与取代芳香酸在乙醇中室温缩合的方法合成一系列酸腙(3a-3l)。材料与方法所有新合成的化合物均采用标准光谱技术进行了表征。然后对合成的化合物进行抗分枝杆菌分析,H37Rv菌株。对结核分枝杆菌受体1ENY、1TED和2FUM三种晶体结构进行分子对接分析。结果发现3i (MIC: 50 μg/mL)和3b (MIC: 50 μg/mL)是进一步开发抗结核新药的最佳配体。我们注意到我们提出的分子比相应的标准抗结核药物如环丙沙星和异烟肼具有更高的对接分数。当用利平斯基的药物相似过滤器进行测试时,发现合成的化合物具有药物相似特性。结论从我们目前的研究来看,我们希望提出N'-芳基烯-4-硝基苯并肼作为抗结核药物。具有这种体系的试剂可以在未来发展成活性铅分子。
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Synthesis, Molecular docking and In-Vitro Antimycobacterial Studies on N'-arylidene-4-nitrobenzohydrazides.
BACKGROUND Mycobacterium tuberculosis (Mtb) is the organism that causes tuberculosis to develop (TB). In 2019, 10 million individuals worldwide contracted tuberculosis, with 1.4 million people dying from the disease each year (World Health Organization, 2021). Hydrazones-hydrazide-based drugs have been shown to be bactericidal against M. tuberculosis replication. OBJECTIVES We herein intended to synthesize a series of acid hydrazones (3a-3l) by condensing 4-nitrobenzohydrazine with substituted aromatic acids in ethanol at room temperature. MATERIALS AND METHODS All newly synthesized compounds were characterized by standard spectroscopic techniques. Synthesized compounds were then tested for anti-mycobacterial analysis, H37Rv strains. Molecular docking analysis was performed for three crystal structures of 1ENY, 1TED and 2FUM Mycobacterium tuberculosis receptors. RESULTS Among all tested molecules, 3i (MIC: 50 μg/mL) and 3b (MIC: 50 μg/mL) were found to best ligands for further development of new anti-TB drug. We noticed that our proposed molecules were having higher docking scores that corresponding standard anti-TB agents such as Ciprofloxacin and Isoniazid. Synthesized compounds were found to have Drug-Likeness properties when tested with Lipinski's filter for drug-likeness. CONCLUSION From our current study, we wish to propose N'-arylidene-4-nitrobenzohydrazides as anti-TB agents. Agents with such system can be developed in future for developments into active lead molecules.
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