Department of Biotechnology, University of Chemistry and Technology, Prague 166 28, Czech Republic.
Department of Biochemistry and Microbiology, University of Chemistry and Technology, Prague 166 28, Czech Republic.
Biotechnol Adv. 2018 May-Jun;36(3):557-576. doi: 10.1016/j.biotechadv.2017.12.016. Epub 2017 Dec 29.
Despite successful vaccination programs and effective treatments for some viral infections, humans are still losing the battle with viruses. Persisting human pandemics, emerging and re-emerging viruses, and evolution of drug-resistant strains impose continuous search for new antiviral drugs. A combination of detailed information about the molecular organization of viruses and progress in molecular biology and computer technologies has enabled rational antivirals design. Initial step in establishing efficacy of new antivirals is based on simple methods assessing inhibition of the intended target. We provide here an overview of biochemical and cell-based assays evaluating the activity of inhibitors of clinically important viruses.
尽管成功地实施了疫苗接种计划并对一些病毒感染进行了有效治疗,但人类仍在与病毒作斗争。持续存在的人类大流行、新出现和重新出现的病毒以及耐药株的演变,都迫使人们不断寻找新的抗病毒药物。对病毒分子组织的详细信息以及分子生物学和计算机技术的进步的结合,使得合理设计抗病毒药物成为可能。评估新抗病毒药物疗效的初始步骤是基于评估预期靶标抑制的简单方法。我们在此概述了评估临床重要病毒抑制剂活性的生化和基于细胞的测定方法。