Department of Chemistry, Quaid-I-Azam University, Islamabad, 45320, Pakistan.
Department of Biotechnology, Quaid-I-Azam University, Islamabad, 45320, Pakistan.
Mol Divers. 2021 May;25(2):763-776. doi: 10.1007/s11030-020-10054-w. Epub 2020 Feb 25.
The present research paper reports the convenient synthesis, successful characterization, in vitro antibacterial, antifungal, antioxidant potency and biocompatibility of N-acyl-morpholine-4-carbothioamides (5a-5j). The biocompatible derivatives were found to be highly active against the tested bacterial and fungal strains. Moreover, some of the screened N-acyl-morpholine-4-carbothioamides exhibited excellent antioxidant potential. Docking simulation provided additional information about possibilities of their inhibitory potential against RNA. It has been predicted by in silico investigation of the binding pattern that compounds 5a and 5j can serve as the potential surrogate for design of novel and potent antibacterial agents. The results for the in vitro bioassays were promising with the identification of compounds 5a and 5j as the lead and selective candidate for RNA inhibition. Results of the docking computations further ascertained the inhibitory potential of compound 5a. Based on the in silico studies, it can be suggested that compounds 5a and 5j can serve as a structural model for the design of antibacterial agents with better inhibitory potential. Binding mode of compound 5j inside the active site of RNA in 3D space. 5j displayed highest antibacterial potential than the reference drug ampicillin with ZOI 10.50 mm against Staphylococcus aureus. 5j also displayed highest antifungal potential than the reference drug amphotericin B with ZOI 18.20 mm against Fusarium solani.
本研究论文报道了 N-酰基吗啉-4-硫代甲酰胺(5a-5j)的方便合成、成功表征、体外抗菌、抗真菌、抗氧化活性和生物相容性。生物相容的衍生物被发现对测试的细菌和真菌菌株具有高度的活性。此外,一些筛选出的 N-酰基吗啉-4-硫代甲酰胺表现出优异的抗氧化潜力。对接模拟提供了有关其对 RNA 抑制潜力的可能性的额外信息。通过对结合模式的计算机预测,化合物 5a 和 5j 可以作为设计新型有效抗菌剂的潜在替代物。体外生物测定的结果很有希望,确定化合物 5a 和 5j 为 RNA 抑制的先导和选择性候选物。对接计算的结果进一步证实了化合物 5a 的抑制潜力。基于计算机研究,可以认为化合物 5a 和 5j 可以作为设计具有更好抑制潜力的抗菌剂的结构模型。化合物 5j 在 3D 空间内 RNA 活性位点的结合模式。5j 对金黄色葡萄球菌的抑菌圈直径(ZOI)为 10.50mm,比参考药物氨苄西林的抑菌圈直径(ZOI)高 10.50mm,表现出最高的抗菌潜力。5j 对茄病镰刀菌的抑菌圈直径(ZOI)为 18.20mm,比参考药物两性霉素 B 的抑菌圈直径(ZOI)高 18.20mm,表现出最高的抗真菌潜力。