MoS2–Calix[4]arene Catalyzed Synthesis and Molecular Docking Study of 2,4,5-Trisubstituted Imidazoles As Potent Inhibitors of Mycobacterium tuberculosis

IF 3.784 3区 化学 Q1 Chemistry ACS Combinatorial Science Pub Date : 2020-08-18 DOI:10.1021/acscombsci.0c00038
Madihalli S. Raghu, Chikkur B. Pradeep Kumar, Kodalapura N. Nagendra Prasad, Maralekere K. Prashanth*, Yogesh K. Kumarswamy, Sunkara Chandrasekhar, Bantal Veeresh
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引用次数: 24

Abstract

A MoS2-supported-calix[4]arene (MoS2-CA4) nanocatalyst was used for efficient synthesis of 2,4,5-trisubstituted imidazole derivatives from 1-(4-nitrophenyl)-2-(4-(trifluoromethyl)phenyl)ethane-1,2-dione, aldehydes and ammonium acetate under solvent-free conditions. Reusability of the catalyst up to five cycles without any significant loss in the yields of the product is the unique feature of this heterogeneous solid catalysis. Furthermore, the noteworthy highlights of this method are safe reaction profiles, broad substrate scope, excellent yields, economical, solvent-free, and simple workup conditions. All synthesized compounds were evaluated for their in vitro antitubercular (TB) activity against Mycobacterium tuberculosis (Mtb) H37Rv. Among the screened compounds 3c, 3d, 3f, 3m, and 3r had MIC values of 2.15, 2.78, 5.75, 1.36, and 0.75 μM, respectively, and exhibited more potency than the reference drugs pyrazinamide (MIC: 3.12 μM), ciprofloxacin (MIC: 4.73 μM), and ethambutol (7.61 μM). Besides, potent compounds (3c, 3d, 3f, 3m, and 3r) have been tested for inhibition of MabA (β-ketoacyl-ACP reductase) enzyme and cytotoxic activity against mammalian Vero cell line. A molecular docking study was carried out on the MabA (PDB ID: 1UZN) enzyme to predict the interactions of the synthesized compounds. The results of the in vitro anti-TB activity and docking study showed that synthesized compounds have a strong anti-TB activity and can be adapted and produced more effectively as a lead compound.

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二硫化钼-杯[4]芳烃催化下2,4,5-三取代咪唑的合成及分子对接研究
采用二硫化钼负载杯[4]芳烃(MoS2-CA4)纳米催化剂,在无溶剂条件下,以1-(4-硝基苯)-2-(4-(三氟甲基)苯基)乙烷-1,2-二酮、醛和乙酸铵为原料,高效合成2,4,5-三取代咪唑衍生物。催化剂的可重复使用性高达五个循环,没有任何重大损失的产品的产量是这种非均相固体催化的独特特点。此外,该方法值得注意的亮点是反应安全,底物范围广,收率高,经济,无溶剂,操作条件简单。所有合成的化合物对结核分枝杆菌H37Rv体外抗结核(TB)活性进行了评价。其中,化合物3c、3d、3f、3m和3r的MIC值分别为2.15、2.78、5.75、1.36和0.75 μM,其效价均高于对照药物吡嗪酰胺(MIC值为3.12 μM)、环丙沙星(MIC值为4.73 μM)和乙胺丁醇(7.61 μM)。此外,还测试了有效化合物(3c, 3d, 3f, 3m和3r)对哺乳动物Vero细胞系的maa (β-酮酰- acp还原酶)酶和细胞毒活性的抑制作用。对MabA (PDB ID: 1UZN)酶进行了分子对接研究,以预测合成的化合物的相互作用。体外抗结核活性和对接研究结果表明,合成的化合物具有较强的抗结核活性,可以作为先导化合物更有效地适应和生产。
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ACS Combinatorial Science
ACS Combinatorial Science CHEMISTRY, APPLIED-CHEMISTRY, MEDICINAL
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期刊介绍: The Journal of Combinatorial Chemistry has been relaunched as ACS Combinatorial Science under the leadership of new Editor-in-Chief M.G. Finn of The Scripps Research Institute. The journal features an expanded scope and will build upon the legacy of the Journal of Combinatorial Chemistry, a highly cited leader in the field.
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