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基于嘧啶酮的新型 α-氨基膦酸酯的设计、合成、对接及作为强效 H1N1 和 HCoV-229E 抑制剂的抗病毒活性评价。

Design, synthesis, docking, and antiviral evaluation of some novel pyrimidinone-based α-aminophosphonates as potent H1N1 and HCoV-229E inhibitors.

机构信息

Chemistry Department, Faculty of Science, Tanta University, 31527 Tanta, Egypt.

Biochemistry Division, Chemistry Department, Faculty of Science, Tanta University, Tanta, Egypt.

出版信息

Bioorg Chem. 2024 Jun;147:107353. doi: 10.1016/j.bioorg.2024.107353. Epub 2024 Apr 8.

Abstract

Dialkyl/aryl aminophosphonates, 3a-g and 4a-e were synthesized using the LiClO catalyzed Kabachnic Fields-type reaction straightforwardly and efficiently. The synthesized phosphonates structures were characterized using elemental analyses, FT-IR, H NMR, C NMR, and MS spectroscopy. The new compounds were subjected to in-silico molecular docking simulations to evaluate their potential inhibition against Influenza A Neuraminidase and RNA-dependent RNA polymerase of human coronavirus 229E. Subsequently, the compounds were further tested in vitro using a cytopathic inhibition assay to assess their antiviral activity against both human Influenza (H1N1) and human coronavirus (HCoV-229E). Diphenyl ((2-(5-cyano-6-oxo-4-phenyl-1,6-dihydropyrimidin-2-yl) hydrazinyl) (furan-2-yl) methyl) phosphonate (3f) and diethyl ((2-(5-cyano-6-oxo-4-phenyl-1,6-dihydropyrimidin-2-yl) hydrazinyl) (1,5-dimethyl-3-oxo-2-phenyl-2,3-dihydro-1H-pyrazol-4-yl) methyl) phosphonate (4e) were demonstrated direct inhibition activity against Influenza A Neuraminidase and RNA-dependent RNA polymerase. This was supported by their highly favorable binding energies in-silico, with top-ranked values of -12.5 kcal/mol and -14.2 kcal/mol for compound (3f), and -13.5 kcal/mol and -9.89 kcal/mol for compound (4e). Moreover, they also displayed notable antiviral efficacy in vitro against both viruses. These compounds demonstrated significant antiviral activity, as evidenced by selectivity indices (SI) of 101.7 and 51.8, respectively against H1N1, and 24.5 and 5.1 against HCoV-229E, respectively.

摘要

二烷基/芳基氨膦酸酯 3a-g 和 4a-e 通过 LiClO 催化的 Kabachnic 型反应直接高效合成。通过元素分析、FT-IR、H NMR、C NMR 和 MS 光谱对合成的膦酸酯结构进行了表征。新化合物进行了计算机分子对接模拟,以评估它们对甲型流感神经氨酸酶和人冠状病毒 229E 的 RNA 依赖性 RNA 聚合酶的潜在抑制作用。随后,通过细胞病变抑制试验在体外进一步测试了这些化合物,以评估它们对人流感(H1N1)和人冠状病毒(HCoV-229E)的抗病毒活性。二苯基((2-(5-氰基-6-氧代-4-苯基-1,6-二氢嘧啶-2-基)肼基)(呋喃-2-基)甲基)膦酸酯(3f)和二乙基((2-(5-氰基-6-氧代-4-苯基-1,6-二氢嘧啶-2-基)肼基)(1,5-二甲基-3-氧代-2-苯基-2,3-二氢-1H-吡唑-4-基)甲基)膦酸酯(4e)被证明对甲型流感神经氨酸酶和 RNA 依赖性 RNA 聚合酶具有直接抑制活性。这得到了它们在计算机模拟中非常有利的结合能的支持,化合物(3f)的排名最高值为-12.5 kcal/mol,化合物(4e)的排名最高值为-14.2 kcal/mol。此外,它们在体外对这两种病毒也表现出显著的抗病毒功效。这些化合物表现出显著的抗病毒活性,其选择性指数(SI)分别为 101.7 和 51.8,对 H1N1 有效,分别为 24.5 和 5.1,对 HCoV-229E 有效。

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