Department of Chemistry, Yuvaraja College, University of Mysore, Mysuru 570005, India.
Center for the Study of Systems Biology, School of Biology, Georgia Institute of Technology, Atlanta, GA 30332, USA.
Bioorg Chem. 2017 Aug;73:109-120. doi: 10.1016/j.bioorg.2017.06.004. Epub 2017 Jun 16.
Oxidative-stress induces inflammatory diseases and infections caused by drug-resistant microbial strains are on the rise necessitating the discovery of novel small-molecules for intervention therapy. The current study presents an effective and new green protocol for the synthesis of thiophene-appended pyrazoles through 3+2 annulations method. Chalcones 3(a-g) were prepared from 5-chloro-2-acetylthiophene and aromatic aldehydes by Claisen-Schmidt approach. The reaction of chalcones 3(a-g) with phenylhydrazine hydrochlorides 4(a-b) in acetic acid (30%) medium and also with freshly prepared citrus extract medium under reflux conditions produced the thiophene appended pyrazoles 5(a-l) in moderate yields. Structures of synthesized new pyrazoles were confirmed by spectral studies, elemental analysis and single crystal X-ray diffraction studies. Further, preliminary assessment of the anti-inflammatory properties of the compounds showed that, amongst the series, compounds 5d, 5e and 5l have excellent anti-inflammatory activities. Further, compounds 5c, 5d, 5g, and 5i exhibited excellent DPPH radical scavenging abilities in comparison with the standard ascorbic acid. Furthermore, using detailed structural modeling and docking efforts, combined with preliminary SAR, we show possible structural and chemical features on both the small-molecules and the protein that might contribute to the binding and inhibition.
氧化应激会引发炎症性疾病,而且由耐药微生物菌株引起的感染也在不断增加,这就需要开发新的小分子药物来进行干预治疗。本研究提出了一种通过 3+2 环加成方法合成噻吩并吡唑的有效且新颖的绿色方案。查耳酮 3(a-g)是由 5-氯-2-乙酰噻吩和芳香醛通过 Claisen-Schmidt 法制备的。查耳酮 3(a-g)与苯肼盐酸盐 4(a-b)在 30%乙酸介质中,以及与新鲜制备的柑橘提取物介质在回流条件下反应,以中等产率生成噻吩并吡唑 5(a-l)。通过光谱研究、元素分析和单晶 X 射线衍射研究证实了合成的新吡唑的结构。进一步评估这些化合物的抗炎特性表明,在所研究的化合物中,化合物 5d、5e 和 5l 具有优异的抗炎活性。此外,与标准抗坏血酸相比,化合物 5c、5d、5g 和 5i 对 DPPH 自由基具有出色的清除能力。此外,通过详细的结构建模和对接研究,结合初步的 SAR,我们展示了小分子和蛋白质上可能有助于结合和抑制的可能的结构和化学特征。