Department of Veterinary Microbiology and Pathology, College of Veterinary Medicine, Washington State University, Pullman, WA 99164, USA.
Department of Microbiology and Immunology, College of Veterinary Medicine, Cornell University, Ithaca, NY 14853, USA.
Virology. 2018 Dec;525:143-149. doi: 10.1016/j.virol.2018.09.009. Epub 2018 Oct 1.
The aquaculture industry is growing rapidly to meet the needs for global protein consumption. Viral diseases in aquaculture are quite challenging due to lack of treatment options as well as limited injection-delivery vaccines, which are costly. Thus, water-immersion antiviral treatments are highly desirable. This study focused on broad-spectrum, light-activated antivirals that target the viral membrane (envelope) of viruses to prevent viral-cell membrane fusion, ultimately blocking viral entry into cells. Of the tested small-molecules, JL122, a new broad-spectrum antiviral previously unexplored against aquatic viruses, blocked infection of three aquatic rhabdoviruses (IHNV, VHSV and SVCV) in cell culture and in two live fish challenge models. Importantly, JL122 inhibited transmission of IHNV from infected to uninfected rainbow trout. Further, the effective antiviral concentrations were not toxic to cells or susceptible fish. These results show promise for JL122 to become an immersion treatment option for outbreaks of aquatic enveloped viral infections.
水产养殖业正在迅速发展,以满足全球蛋白质消费的需求。由于缺乏治疗方法以及有限的注射疫苗,水产养殖中的病毒性疾病极具挑战性,这些疫苗成本高昂。因此,水浸式抗病毒治疗方法非常理想。本研究专注于广谱、光激活的抗病毒药物,这些药物针对病毒的膜(包膜),以防止病毒-细胞膜融合,最终阻止病毒进入细胞。在所测试的小分子中,JL122 是一种新的广谱抗病毒药物,此前尚未针对水生病毒进行探索,它可在细胞培养和两种活体鱼挑战模型中阻断三种水生弹状病毒(IHNV、VHSV 和 SVCV)的感染。重要的是,JL122 抑制了 IHNV 从感染鱼向未感染鱼的传播。此外,有效的抗病毒浓度对细胞或易感鱼类没有毒性。这些结果表明,JL122 有望成为水生有包膜病毒感染爆发的浸浴治疗选择。