Key Laboratory of Animal Models and Human Disease Mechanisms of the Chinese Academy of Sciences/Key Laboratory of Bioactive Peptides of Yunnan Province, KIZ-CUHK Joint Laboratory of Bioresources and Molecular Research in Common Diseases, Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming, Yunnan 650223, China; College of Pharmacy, Soochow University, Suzhou 215021, China.
School of Pharmaceutical Sciences, Nanjing Tech University, Nanjing, Jiangsu 211816, China.
Virus Res. 2023 Mar;326:199062. doi: 10.1016/j.virusres.2023.199062. Epub 2023 Feb 7.
The prevalence and ravages of Zika virus (ZIKV) seriously endanger human health, especially causing significant neurological defects in both neonates as pediatric microcephaly and adults as Guillain-Barré syndrome. In this work, we studied anti-ZIKV effects of the fused tricyclic derivatives of indoline and imidazolidinone and discovered that some of them are valuable leads for drug discovery of anti-ZIKV agents. The current results show that certain compounds are broad-spectrum inhibitors of ZIKV- and dengue virus (DENV)-infection while distinctive compounds are selective ZIKV inhibitors or selective DENV inhibitors. Compounds of 12, 17 and 28 are more active against Asian ZIKV SZ-VIV01 strain than African ZIKV MR766 strain. It is valued that silylation makes six TBS compounds of 4-nitrophenyl hydrazine series and phenyl hydrazine series more active against ZIKV infection than their phenols. Time-of-addition and withdrawal studies indicate that compound 12 majorly acts on post-infection of RNA synthesis stage of ZIKV life cycle. Moreover, compounds of 12, 17 and 18 are anti-ZIKV agents with the inhibitory activities to ZIKV NS5 RdRp while 12 doesn't inhibit DENV infection even though it is a DENV RdRp inhibitor, 17 is an active agent against DENV infection but is only a weak DENV NS5 RdRp inhibitor, and 28 is inactive against DENV infection and not a DENV NS5 RdRp inhibitor. As a result, a compound's antiviral difference between ZIKV and DENV is not always related to anti-RdRp difference between ZIKV RdRp and DENV RdRp, and structural features of a compound play important roles in executing antiviral and anti-RdRp functions. Further discovery of highly potent broad-spectrum or selective agents against infection by ZIKV and DENV will be facilitated.
寨卡病毒(ZIKV)的流行和肆虐严重危害人类健康,特别是导致新生儿小儿小头畸形和成人吉兰-巴雷综合征的严重神经缺陷。在这项工作中,我们研究了吲哚啉和咪唑烷酮的三环衍生物的抗 ZIKV 作用,发现其中一些是抗 ZIKV 药物发现的有价值的先导化合物。目前的结果表明,某些化合物是 ZIKV 和登革热病毒(DENV)感染的广谱抑制剂,而独特的化合物是选择性 ZIKV 抑制剂或选择性 DENV 抑制剂。化合物 12、17 和 28 对亚洲 ZIKV SZ-VIV01 株的活性高于非洲 ZIKV MR766 株。值得注意的是,硅烷化使 4-硝基苯肼系列和苯肼系列的六个 TBS 化合物对 ZIKV 感染的活性高于其酚类。时间添加和撤出研究表明,化合物 12 主要作用于 ZIKV 生命周期的 RNA 合成后感染期。此外,化合物 12、17 和 18 是 ZIKV NS5 RdRp 的抑制剂,对 ZIKV 具有抑制活性,而 12 即使是 DENV RdRp 抑制剂,也不抑制 DENV 感染,17 是抗 DENV 感染的有效药物,但只是弱 DENV NS5 RdRp 抑制剂,28 对 DENV 感染无活性,不是 DENV NS5 RdRp 抑制剂。因此,化合物对 ZIKV 和 DENV 的抗病毒差异并不总是与 ZIKV RdRp 和 DENV RdRp 之间的抗 RdRp 差异相关,化合物的结构特征在执行抗病毒和抗 RdRp 功能方面起着重要作用。将促进对 ZIKV 和 DENV 感染的高效广谱或选择性药物的进一步发现。