Despite the prepdominat agent causing severe entero-pathogenic diarrhea in swine, there are no effective therapeutical treatment of porcine epidemic diarrhea virus (PEDV). In this study, we evaluated the antiviral activity of five phlorotannins isolated from Ecklonia cava (E. cava) against PEDV. In vitro antiviral activity was tested using two different assay strategies: (1) blockage of the binding of virus to cells (simultaneous-treatment assay) and (2) inhibition of viral replication (post-treatment assay). In simultaneous-treatment assay, compounds 2-5 except compound 1 exhibited antiviral activities of a 50% inhibitory concentration (IC₅₀) with the ranging from 10.8 ± 1.4 to 22.5 ± 2.2 μM against PEDV. Compounds 1-5 were completely blocked binding of viral spike protein to sialic acids at less than 36.6 μM concentrations by hemagglutination inhibition. Moreover, compounds 4 and 5 of five phlorotannins inhibited viral replication with IC₅₀ values of 12.2 ± 2.8 and 14.6 ± 1.3 μM in the post-treatment assay, respectively. During virus replication steps, compounds 4 and 5 exhibited stronger inhibition of viral RNA and viral protein synthesis in late stages (18 and 24 h) than in early stages (6 and 12 h). Interestingly, compounds 4 and 5 inhibited both viral entry by hemagglutination inhibition and viral replication by inhibition of viral RNA and viral protein synthesis, but not viral protease. These results suggest that compounds isolated from E. cava have strong antiviral activity against PEDV, inhibiting viral entry and/or viral replication, and may be developed into natural therapeutic drugs against coronavirus infection.

译文

:尽管主要的药物引起猪严重的肠病性腹泻,但尚无有效的治疗猪流行性腹泻病毒(PEDV)的方法。在这项研究中,我们评估了从Ecklonia cava(E. cava)分离得到的五种环戊宁对PEDV的抗病毒活性。使用两种不同的测定策略测试了体外抗病毒活性:(1)阻断病毒与细胞的结合(同时治疗测定)和(2)抑制病毒复制(治疗后测定)。在同时处理试验中,除化合物1外,化合物2-5显示出对PEDV的50%抑制浓度(IC 50)的抗病毒活性,范围为10.8±1.4至22.5±2.2μM。通过血凝抑制,化合物1-5以低于36.6μM的浓度完全阻断了病毒刺突蛋白与唾液酸的结合。而且,在后处理测定中,五个苯环单宁的化合物4和5抑制病毒复制,IC 50值分别为12.2±2.8和14.6±1.3μM。在病毒复制步骤中,化合物4和5在晚期(18和24小时)比早期(6和12小时)表现出对病毒RNA和病毒蛋白质合成的更强抑制作用。有趣的是,化合物4和5通过血凝抑制作用抑制病毒进入,并通过抑制病毒RNA和病毒蛋白质合成抑制病毒复制,但不抑制病毒蛋白酶。这些结果表明,从大肠杆菌分离的化合物对PEDV具有很强的抗病毒活性,抑制病毒的进入和/或病毒复制,并且可以发展成为抗冠状病毒感染的天然治疗药物。

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