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首页> 外文期刊>ACS Omega >Pyridine- and Thiazole-Based Hydrazides with Promising Anti-inflammatory and Antimicrobial Activities along with Their In Silico Studies
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Pyridine- and Thiazole-Based Hydrazides with Promising Anti-inflammatory and Antimicrobial Activities along with Their In Silico Studies

机译:基于吡啶和噻唑基肼肼,具有抗炎和抗微生物活性以及它们在硅研究中

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A new class of compounds formed by the linkage of ?C(O)–NH– with pyridine and thiazole moieties was designed, synthesized, and characterized by various spectral approaches. The newly characterized compounds were evaluated for their antimicrobial as well as anti-inflammatory properties. The in vitro anti-inflammatory activity of these compounds was evaluated by denaturation of the bovine serum albumin method and showed inhibition in the range of IC_(50) values—46.29–100.60 μg/mL. Among all the tested compounds, compound 5l has the highest IC_(50) value and compound 5g has the least IC_(50) value. On the other hand, antimicrobial results revealed that compound 5j showed the lowest MIC values and compound 5a has the highest MIC values. Furthermore, molecular docking of the active compounds demonstrated a better docking score and interacted well with the target protein. Physicochemical parameters of the titled compounds were found suitable in the reference range only. The in silico molecular docking study revealed their COX-inhibitory action. Compound 5j emerged as a significant bioactive molecule among the synthesized analogues.
机译:通过各种光谱方法设计,合成,用吡啶和噻唑部分用吡啶和噻唑部分的连接形成的新类化合物。评估新表征化合物,用于它们的抗微生物和抗炎性质。通过使牛血清白蛋白法的变性评价这些化合物的体外抗炎活性,并在IC_(50)值-46.29-100.60μg/ ml的范围内显示抑制。在所有测试化合物中,化合物 5L具有最高IC_(50)值,化合物 5g具有最小IC_(50)值。另一方面,抗微生物的结果显示,化合物 5J显示最低的MIC值,并且化合物 5a具有最高的麦克风值。此外,活性化合物的分子对接证明了更好的对接得分并与靶蛋白相互作用。发现标题化合物的物理化学参数仅适用于参考范围。硅分子对接研究中的揭示了它们的Cox抑制作用。化合物 5J在合成类似物中呈现出显着的生物活性分子。

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