College of Pharmacy, Guangxi University of Chinese Medicine, Nanning 530222, China.
Faculty of Chinese Medicine Science, Guangxi University of Chinese Medicine, Nanning 530222, China.
Molecules. 2019 May 30;24(11):2065. doi: 10.3390/molecules24112065.
Acridine and thiourea derivatives are important compounds in medicinal chemistry due to their diverse biological properties including anticancer and antimicrobial effects. However, literature reveals some side effects associated with use of acridines. It is suggested that hybrid molecules may reduce the side effects and enhance the beneficial properties due to synergistic activity. The objectives of the present study are to synthesize and evaluate the anticancer and antimicrobial properties of new hybrids of acridine thiosemicarbazides derivatives. The structures of the synthesized compounds were elucidated by MS and NMR spectra. In antimicrobial assay, Compound exhibited potent antimicrobial activity compared to the other four compounds. In anticancer studies, we observed that compounds , , and exhibited high cytotoxicity against the MT-4 cell line, with IC50 values of 18.42 ± 1.18, 15.73 ± 0.90, 10.96 ± 0.62 and 11.63 ± 0.11 μM, respectively. The evaluation of anticancer effects, and the associated mechanism reveals that, the anticancer activities may be related to Topo I inhibitory activity, apoptosis and cell-cycle. Molecular docking studies revealed that the presence of planar naphtho-fused rings and a flexible thiourea group together, could improve DNA-intercalation and inhibition of DNA-Topo I activity. The results of this study demonstrate that the rational design of target derivatives as novel antimicrobial or antitumor leads is feasible.
吖啶和硫脲衍生物由于其多种生物性质,包括抗癌和抗菌作用,是药物化学中的重要化合物。然而,文献中揭示了一些与吖啶类药物使用相关的副作用。有人提出,杂合分子由于协同作用可能会降低副作用并增强有益的特性。本研究的目的是合成并评估吖啶硫代氨基甲脒衍生物的新型杂化物的抗癌和抗菌特性。通过 MS 和 NMR 光谱阐明了合成化合物的结构。在抗菌测定中,与其他四种化合物相比,化合物 表现出很强的抗菌活性。在抗癌研究中,我们观察到化合物 、 、 和 对 MT-4 细胞系表现出高细胞毒性,IC50 值分别为 18.42 ± 1.18、15.73 ± 0.90、10.96 ± 0.62 和 11.63 ± 0.11 μM。抗癌作用的评估及其相关机制表明,抗癌活性可能与 Topo I 抑制活性、细胞凋亡和细胞周期有关。分子对接研究表明,平面萘并稠合环和柔性硫脲基团的存在可以共同改善 DNA 插入和抑制 DNA-Topo I 活性。本研究的结果表明,作为新型抗菌或抗肿瘤先导物的靶向衍生物的合理设计是可行的。