Chemistry of Natural Compounds Department, Pharmaceutical and Drug Industries Research Institute, National Research Center, Dokki, Cairo 12622, Egypt.
Department of Medical Physiology, College of Medicine, King Khalid University, Asir 61421, Saudi Arabia.
Bioorg Chem. 2024 Oct;151:107703. doi: 10.1016/j.bioorg.2024.107703. Epub 2024 Aug 6.
Sporadically and periodically, influenza outbreaks threaten global health and the economy. Antigen drift-induced influenza virus mutations hamper antiviral drug development. Thus, a novel antiviral agent is urgently needed to address medication inefficacy issues. Herein, sixteen new quinoline-triazole hybrids 6a-h and 9a-h were prepared and evaluated in vitro against the H1N1 virus. In particular, 6d, 6e, and 9b showed promising H1N1 antiviral activity with selective index (SI) CC/IC values of 15.8, 37, and 29.15. After that, the inhibition rates for various mechanisms of action (virus replication, adsorption, and virucidal activity) were investigated for the most efficient candidates 6d, 6e, and 9b. Additionally, their ability to inhibit neuraminidase was evaluated. With an IC value of 0.30 µM, hybrid 6d demonstrated effective and comparable inhibitory activity to Oseltamivir. Ultimately, molecular modeling investigations, encompassing molecular docking and molecular dynamic simulations, were conducted to provide a scientific basis for the observed antiviral results.
偶发性和周期性地,流感爆发威胁着全球健康和经济。抗原漂移诱导的流感病毒突变阻碍了抗病毒药物的开发。因此,迫切需要一种新型的抗病毒药物来解决药物疗效不佳的问题。在此,我们制备了十六种新的喹啉-三唑杂合体 6a-h 和 9a-h,并对 H1N1 病毒进行了体外评估。特别是 6d、6e 和 9b 对 H1N1 具有有前景的抗病毒活性,选择性指数(SI)CC/IC 值分别为 15.8、37 和 29.15。之后,我们对最有效的候选物 6d、6e 和 9b 进行了针对各种作用机制(病毒复制、吸附和杀病毒活性)的抑制率研究。此外,我们还评估了它们抑制神经氨酸酶的能力。杂合体 6d 的 IC 值为 0.30µM,其抑制活性与奥司他韦相当。最后,我们进行了分子建模研究,包括分子对接和分子动力学模拟,为观察到的抗病毒结果提供了科学依据。