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新型氨基吡唑标记腙类化合物作为抗结核药物:合成与分子对接研究。

Novel Aminopyrazole Tagged Hydrazones as Anti-Tubercular Agents: Synthesis and Molecular Docking Studies.

机构信息

Research Scholar, Mewar University, Chittorgarh, Rajasthan, India.

Teegala Ram Reddy College of Pharmacy, Pragathi Colony, Meerpet, Hyderabad- 500097, Telangana, India.

出版信息

Med Chem. 2021;17(4):344-351. doi: 10.2174/1573406416666200514084747.

Abstract

BACKGROUND

Pyrazole derivatives have been reported to possess numerous pharmacological activities viz., anti-inflammatory, antipsychotic, etc. Our group has disclosed that pyrazole benzamides display potent antibacterial and anti-tubercular activities.

OBJECTIVE

Synthesis of new pyrazole acetamides which possess hydrazone group to be evaluated for antitubercular activity.

METHODS

The key intermediate 5-aminopyrazole was synthesized with the known procedure, which is then converted into chloroacetamide. This compound than resulted in hydrazine derivative and finally converted into aromatic hydrazones. All the compounds were screened for antitubercular activity.

RESULTS

All the synthesized compounds have been characterized by their spectral data obtained and subjected to anti-tubercular activity. Among all the twenty tested compounds, three compounds, 5a5, 5b5 and 5b7 have demonstrated MIC value of 3.12 μg/mL against MTB H37Rv. Docking studies revealed important hydrogen bonding interactions with InhA.

CONCLUSION

Three compounds 5a5, 5b5 and 5b7 were found to be most potent among the series of compounds. Docking studies of compounds explained the presence of hydrogen bonding and π- π stacking interactions with InhA. Further synthesis of more such derivatives with optimized groups would produce compounds with more potent anti-tubercular activity.

摘要

背景

已有报道称,吡唑衍生物具有多种药理活性,如抗炎、抗精神病等。我们的研究小组已经发现,吡唑苯甲酰胺具有很强的抗菌和抗结核活性。

目的

合成具有腙基的新型吡唑乙酰胺,评估其抗结核活性。

方法

采用已知的方法合成关键中间体 5-氨基吡唑,然后将其转化为氯乙酰胺。该化合物进一步转化为肼衍生物,最后转化为芳族腙。所有化合物均进行了抗结核活性筛选。

结果

所有合成的化合物均通过获得的光谱数据进行了表征,并进行了抗结核活性测试。在所测试的二十种化合物中,三种化合物 5a5、5b5 和 5b7 对 MTB H37Rv 的 MIC 值为 3.12μg/mL。对接研究表明与 InhA 存在重要的氢键相互作用。

结论

在所研究的化合物系列中,化合物 5a5、5b5 和 5b7 被发现是最有效的。化合物的对接研究解释了与 InhA 存在氢键和 π-π 堆积相互作用。进一步合成具有优化基团的更多此类衍生物,将产生具有更强抗结核活性的化合物。

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