Department of Medicinal Chemistry, Key Laboratory of Chemical Biology (Ministry of Education), School of Pharmaceutical Sciences, Cheeloo College of Medicine, Shandong University, 44 West Culture Road, 250012 Jinan, Shandong, P. R. China.
Department of Molecular Medicine, University of Padova, Via Gabelli 63, 35121 Padova, Italy.
J Med Chem. 2022 Sep 8;65(17):11550-11573. doi: 10.1021/acs.jmedchem.1c01970. Epub 2022 Aug 8.
With our continuous endeavors in seeking neuraminidase (NA) inhibitors, we reported herein three series of novel oseltamivir amino derivatives with the goal of exploring the druggable chemical space inside the 150-cavity of influenza virus NAs. Among them, around half of the compounds in were demonstrated to be better inhibitors against both wild-type and oseltamivir-resistant group-1 NAs than oseltamivir carboxylate (OSC). Notably, compounds , , , and showed more potent or equipotent antiviral activity against H1N1, H5N1, and H5N8 viruses compared to OSC in cellular assays. Furthermore, compounds and exhibited high metabolic stability in human liver microsomes (HLMs) and low inhibitory effect on main cytochrome P450 (CYP) enzymes, as well as low acute/subacute toxicity and certain antiviral efficacy . Also, pharmacokinetic (PK) and molecular docking studies were performed. Overall, and possess great potential to serve as anti-influenza candidates and are worthy of further investigation.
在不断探索神经氨酸酶(NA)抑制剂的过程中,我们报道了三个系列新型奥司他韦氨基酸衍生物,旨在探索流感病毒 NAs 的 150 腔内部的可药物化学空间。其中,约一半的化合物 比奥司他韦羧酸盐(OSC)对野生型和奥司他韦耐药型 1 NA 具有更好的抑制作用。值得注意的是,与 OSC 相比,化合物 、 、 、 对细胞试验中的 H1N1、H5N1 和 H5N8 病毒表现出更强或同等的抗病毒活性。此外,化合物 和 在人肝微粒体(HLMs)中表现出较高的代谢稳定性,对主要细胞色素 P450(CYP)酶的抑制作用较低,急性/亚急性毒性低,具有一定的抗病毒功效。还进行了药代动力学(PK)和分子对接研究。总体而言, 和 具有作为抗流感候选药物的巨大潜力,值得进一步研究。