Department of Biomedical, Surgical and Dental Sciences, Università degli Studi di Milano, 20133 Milan, Italy.
Institute for Molecular and Translational Cardiology (IMTC), San Donato Milanese, 20097 Milan, Italy.
ACS Infect Dis. 2023 Mar 10;9(3):617-630. doi: 10.1021/acsinfecdis.2c00576. Epub 2023 Feb 27.
Global infections with viruses belonging to the , such as Newcastle disease virus (NDV) or human parainfluenza viruses (hPIVs), pose a serious threat to animal and human health. NDV-HN and hPIVs-HN (HN hemagglutinin-neuraminidase) share a high degree of similarity in catalytic site structures; therefore, the development of an efficient experimental NDV host model (chicken) may be informative for evaluating the efficacy of hPIVs-HN inhibitors. As part of the broad research in pursuit of this goal and as an extension of our published work on antiviral drug development, we report here the biological results obtained with some newly synthesized C4- and C5-substituted 2,3-unsaturated sialic acid derivatives against NDV. All developed compounds showed high neuraminidase inhibitory activity (IC 0.03-13 μM). Four molecules (, , , ) confirmed their high inhibitory activity, which caused a significant reduction of NDV infection in , accompanied by very low toxicity.
属于 的病毒全球感染,如新城疫病毒(NDV)或人类副流感病毒(hPIVs),对动物和人类健康构成严重威胁。NDV-HN 和 hPIVs-HN(HN 血凝素-神经氨酸酶)在催化位点结构上具有高度相似性;因此,开发有效的实验性 NDV 宿主模型(鸡)可能有助于评估 hPIVs-HN 抑制剂的功效。作为追求这一目标的广泛研究的一部分,也是我们已发表的抗病毒药物开发工作的延伸,我们在此报告了一些新合成的 C4-和 C5-取代的 2,3-不饱和唾液酸衍生物对 NDV 的生物学研究结果。所有开发的化合物均表现出高神经氨酸酶抑制活性(IC0.03-13 μM)。四种分子(、、、)证实了它们的高 抑制活性,这导致 在感染 NDV 时显著减少,同时毒性非常低。