Department of Microbiology, School of Medicine, Dokkyo Medical University, Tochigi 321-0293, Japan.
Virus Infectious Diseases Unit, RIKEN, Saitama 351-0198, Japan.
Viruses. 2022 Dec 20;15(1):4. doi: 10.3390/v15010004.
Bovine leukemia virus (BLV) infection causes endemic bovine leukemia and lymphoma, resulting in lower carcass weight and reduced milk production by the infected cattle, leading to economic losses. Without effective measures for treatment and prevention, high rates of BLV infection can cause problems worldwide. BLV research is limited by the lack of a model system to assay infection. To overcome this, we previously developed the luminescence syncytium induction assay (LuSIA), a highly sensitive and objectively quantifiable method for visualizing BLV infectivity. In this study, we applied LuSIA for the high-throughput screening of drugs that could inhibit BLV infection. We screened 625 compounds from a chemical library using LuSIA and identified two that markedly inhibited BLV replication. We then tested the chemical derivatives of those two compounds and identified BSI-625 and -679 as potent inhibitors of BLV replication with low cytotoxicity. Interestingly, BSI-625 and -679 appeared to inhibit different steps of the BLV lifecycle. Thus, LuSIA was applied to successfully identify inhibitors of BLV replication and may be useful for the development of anti-BLV drugs.
牛白血病病毒(BLV)感染会导致地方性牛白血病和淋巴瘤,使受感染的牛体重下降,牛奶产量减少,导致经济损失。如果没有有效的治疗和预防措施,高比例的 BLV 感染会在全球范围内造成问题。由于缺乏用于检测感染的模型系统,BLV 的研究受到限制。为了克服这一问题,我们之前开发了发光合胞体诱导测定法(LuSIA),这是一种高度敏感和客观可量化的方法,可用于可视化 BLV 的感染力。在这项研究中,我们应用 LuSIA 对可能抑制 BLV 感染的药物进行高通量筛选。我们使用 LuSIA 从化学文库中筛选了 625 种化合物,并鉴定出两种能显著抑制 BLV 复制的化合物。然后,我们测试了这两种化合物的化学衍生物,并确定 BSI-625 和 -679 是具有低细胞毒性的 BLV 复制的有效抑制剂。有趣的是,BSI-625 和 -679 似乎抑制 BLV 生命周期的不同步骤。因此,LuSIA 成功地用于鉴定 BLV 复制的抑制剂,可能有助于开发抗 BLV 药物。