Department of Biology, University of Waterloo, Waterloo, ON, Canada; Department of Health Sciences, Wilfrid Laurier University, Waterloo, ON, Canada.
La Crosse Fish Health Center-Midwest Fisheries Center, U.S. Fish and Wildlife Service, Onalaska, WI, USA.
Fish Shellfish Immunol. 2019 Mar;86:403-409. doi: 10.1016/j.fsi.2018.11.053. Epub 2018 Nov 22.
The farming of baitfish, fish used by anglers to catch predatory species, is of economic and ecological importance in North America. Baitfish, including the fathead minnow (Pimephales promelas), are susceptible to infection from aquatic viruses, such as viral hemorrhagic septicemia virus (VHSV). VHSV infections can cause mass mortality events and have the potential to be spread to novel water bodies through baitfish as a vector. In this study, a novel skin cell line derived from fathead minnow (FHMskin) is described and its use as a tool to study innate antiviral immune responses and possible therapies is introduced. FHMskin grows optimally in 10% fetal bovine serum and at warmer temperatures, 25-30 °C. FHMskin is susceptible and permissive to VHSV-IVb infection, producing high viral titres of 7.35 × 10 TCID/mL after only 2 days. FHMskin cells do not experience significant dsRNA-induced death after treatment with 50-500 ng/mL of in vitro transcribed dsRNA for 48 h and respond to dsRNA treatment by expressing high levels of three innate immune genes, viperin, ISG15, and Mx1. Pretreatment with dsRNA for 24 h significantly protected cells from VHSV-induced cell death, 500 ng/mL of dsRNA reduced cell death from 70% to less than 15% at a multiplicity of infection of 0.1. Thus, the novel cell line, FHMskin, represents a new method for producing high tires of VHSV-IVb in culture, and for studying dsRNA-induced innate antiviral responses, with future applications in dsRNA-based antiviral therapeutics.
养殖诱饵鱼(钓鱼者用来钓掠食性鱼类的鱼)在北美的经济和生态方面都具有重要意义。诱饵鱼,包括黑头呆鱼(Pimephales promelas),容易感染水生病毒,如病毒性出血性败血症病毒(VHSV)。VHSV 感染可导致大规模死亡事件,并有可能通过诱饵鱼作为载体传播到新的水体。在这项研究中,描述了一种从黑头呆鱼(FHMskin)衍生的新型皮肤细胞系,并介绍了其作为研究先天抗病毒免疫反应和可能的治疗方法的工具。FHMskin 在 10%胎牛血清和较温暖的温度(25-30°C)下生长最佳。FHMskin 易受 VHSV-IVb 感染,并允许感染,在感染后仅 2 天即可产生 7.35×10 TCID/mL 的高病毒滴度。FHMskin 细胞在用 50-500ng/mL 的体外转录 dsRNA 处理 48 小时后不会因 dsRNA 诱导而导致明显的 dsRNA 诱导死亡,并通过表达高水平的三种先天免疫基因(viperin、ISG15 和 Mx1)对 dsRNA 处理做出反应。dsRNA 预处理 24 小时可显著保护细胞免受 VHSV 诱导的细胞死亡,500ng/mL 的 dsRNA 将感染复数为 0.1 时的细胞死亡率从 70%降低到低于 15%。因此,新型细胞系 FHMskin 代表了在培养中产生高滴度 VHSV-IVb 的新方法,并且可用于研究 dsRNA 诱导的先天抗病毒反应,未来可应用于 dsRNA 为基础的抗病毒治疗。