Ultrasound-assisted synthesis of auxiliary pyrazoline integrated thiazole, thiazolone derivative and their biological evaluation

N. Manju, B. Kalluraya, Asma, S. Madankumar, B. C. Revanasiddappa, Chandra
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引用次数: 2

Abstract

In this paper, we describe a simplecatalyst-free protocol for the synthesis of thiazole, thiazolone integrated pyrazole derivatives, under ultra-sonication technique. Thiazolone derivatives 5a, 5e, 5i, 5d, 5h, 5l were derived from [2+3] cyclocondensation reaction between carbothioamide pyrazoline (4 a-c) as S-N bi-nucleophile with DMAD/DEAD. The target molecules 5b, 5f, 5j,5c, 5g, 5k weresynthesized by reaction of (4 a-c) with substituted bromoethanone. Formation of the products was confirmed by FT-IR, 1H-NMR, 13C-NMR, LC-MS and X-ray analysis. Docking studies were carried out against the antimicrobial target (3UDI) to know interaction of the molecules (ligands) with the docked target. Among the docked compounds thiazolone derivative 5d showed the minimum binding energy of -9.08 kJ/mol with ligand efficiency of -0.23. All the synthesized compounds were examined primarily for their in-vitro antibacterial and antioxidant activity (IC50). Compound 5g (18±0.0) and 5d (19.5±0.5) showed significant bacterial inhibition against E.coli and S.aureus. Compound 5k (16.57) were showed substantial DPPH free radical inhibition activity as compared to the reference drug Ascorbic acid.
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超声辅助合成辅助吡唑啉整合噻唑、噻唑酮衍生物及其生物学评价
本文介绍了一种在超声技术下合成噻唑酮类吡唑衍生物的简单无催化剂方案。噻唑酮类衍生物5a, 5e, 5i, 5d, 5h, 5l由碳硫酰胺吡唑啉(4 a-c)作为S-N双亲核试剂与DMAD/DEAD[2+3]环缩合反应而得。目的分子5b、5f、5j、5c、5g、5k由(4a -c)与取代溴乙酮反应合成。通过FT-IR, 1H-NMR, 13C-NMR, LC-MS和x射线分析证实了产物的形成。对抗菌靶标(3UDI)进行对接研究,了解分子(配体)与对接靶标的相互作用。噻唑酮衍生物5d的最小结合能为-9.08 kJ/mol,配体效率为-0.23。所有合成的化合物主要进行体外抗菌和抗氧化活性(IC50)的检测。化合物5g(18±0.0)和5d(19.5±0.5)对大肠杆菌和金黄色葡萄球菌有明显的抑制作用。与参比药物抗坏血酸相比,化合物5k(16.57)显示出显著的DPPH自由基抑制活性。
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