Gadali Khadija El, Rafya Meriem, El Mansouri Az-Eddine, Maatallah Mohamed, Vanderlee Arie, Mehdi Ahmad, Neyts Johan, Jochmans Dirk, De Jonghe Steven, Benkhalti Fatiha, Sanghvi Yogesh S, Taourirte Moha, Lazrek Hassan B
Laboratoire de Recherche en Développement Durable et Santé, Faculty of Sciences and Technology Gueliz (FSTG), BP549, Marrakech 40000, Morocco; Laboratory of Molecular Chemistry, Department of Chemistry, Faculty of Sciences Semlalia, Marrakech 40000, Morocco.
Laboratoire de Recherche en Développement Durable et Santé, Faculty of Sciences and Technology Gueliz (FSTG), BP549, Marrakech 40000, Morocco.
Eur J Med Chem. 2024 Mar 15;268:116235. doi: 10.1016/j.ejmech.2024.116235. Epub 2024 Feb 16.
With the aim to identify new antiviral agents with antibacterial properties, a series of 2-quinolone-1,2,3-triazole derivatives bearing α-aminophosphonates was synthesized and characterized by H NMR, C NMR, P NMR, single crystal XRD and HRMS analyses. These compounds were examined against five RNA viruses (YFV, ZIKV, CHIKV, EV71 and HRV) from three distinct families (Picornaviridae, Togaviridae and Flaviviridae) and four bacterial strains (S. aureus, E. feacalis, E. coli and P. aeruginosa). The α-aminophosphonates 4f, 4i, 4j, 4k, 4p and 4q recorded low IC values of 6.8-10.91 μM, along with elevated selectivity indices ranging from 2 to more than 3, particularly against YFV, CHIKV and HRV-B14. Besides, the synthesized compounds were generally more sensitive toward Gram-positive bacteria, with the majority of them displaying significant potency against E. feacalis. Specifically, an excellent anti-enterococcus activity was obtained by compound 4q with MIC and MBC values of 0.03 μmol/mL, which were 8.7 and 10 times greater than those of the reference drugs ampicillin and rifampicin, respectively. Also, compounds 4f, 4p and 4q showed potent anti-staphylococcal activity with MIC values varying between 0.11 and 0.13 μmol/mL, compared to 0.27 μmol/mL for ampicillin. The results from DFT and molecular docking simulations were in agreement with the biological assays, proving the binding capability of hybrids 4f, 4i, 4j, 4k, 4p and 4q with viral and bacterial target enzymes through hydrogen bonds and other non-covalent interactions. The in silico ADME/Tox prediction revealed that these molecules possess moderate to good drug-likeness and pharmacokinetic properties, with a minimal chance of causing liver toxicity or carcinogenic effects.
为了鉴定具有抗菌特性的新型抗病毒药物,合成了一系列带有α-氨基膦酸酯的2-喹诺酮-1,2,3-三唑衍生物,并通过氢核磁共振(¹H NMR)、碳核磁共振(¹³C NMR)、磷核磁共振(³¹P NMR)、单晶X射线衍射(XRD)和高分辨质谱(HRMS)分析对其进行了表征。针对来自三个不同病毒科(小RNA病毒科、披膜病毒科和黄病毒科)的五种RNA病毒(黄热病毒、寨卡病毒、基孔肯雅病毒、肠道病毒71型和人鼻病毒)以及四种细菌菌株(金黄色葡萄球菌、粪肠球菌、大肠杆菌和铜绿假单胞菌)对这些化合物进行了检测。α-氨基膦酸酯4f、4i、4j、4k、4p和4q的半数抑制浓度(IC)值低至6.8 - 10.91 μM,选择性指数升高,范围从2到超过3,特别是对黄热病毒、基孔肯雅病毒和人鼻病毒B14。此外,合成的化合物对革兰氏阳性菌通常更敏感,其中大多数对粪肠球菌显示出显著的效力。具体而言,化合物4q获得了优异的抗肠球菌活性,其最低抑菌浓度(MIC)和最低杀菌浓度(MBC)值为0.03 μmol/mL,分别比参考药物氨苄西林和利福平高8.7倍和10倍。此外,与氨苄西林的0.27 μmol/mL相比,化合物4f、4p和4q显示出有效的抗葡萄球菌活性,MIC值在0.11至0.13 μmol/mL之间。密度泛函理论(DFT)和分子对接模拟的结果与生物学测定结果一致,证明了杂合物4f、4i、4j、4k、4p和4q通过氢键和其他非共价相互作用与病毒和细菌靶酶的结合能力。计算机辅助药物代谢动力学/毒性预测表明,这些分子具有中等至良好的类药性和药代动力学特性,引起肝毒性或致癌作用的可能性极小。