Denny P W, Steel P G
Biophysical Sciences Institute, Department of Chemistry and School of Biological Sciences, University Science Laboratories, Durham, UK School of Medicine, Pharmacy and Health, Durham University, Durham, UK
Biophysical Sciences Institute, Department of Chemistry and School of Biological Sciences, University Science Laboratories, Durham, UK.
J Biomol Screen. 2015 Jan;20(1):56-63. doi: 10.1177/1087057114546552. Epub 2014 Aug 13.
High-throughput screening (HTS) efforts for neglected tropical disease (NTD) drug discovery have recently received increased attention because several initiatives have begun to attempt to reduce the deficit in new and clinically acceptable therapies for this spectrum of infectious diseases. HTS primarily uses two basic approaches, cell-based and in vitro target-directed screening. Both of these approaches have problems; for example, cell-based screening does not reveal the target or targets that are hit, whereas in vitro methodologies lack a cellular context. Furthermore, both can be technically challenging, expensive, and difficult to miniaturize for ultra-HTS [(u)HTS]. The application of yeast-based systems may overcome some of these problems and offer a cost-effective platform for target-directed screening within a eukaryotic cell context. Here, we review the advantages and limitations of the technologies that may be used in yeast cell-based, target-directed screening protocols, and we discuss how these are beginning to be used in NTD drug discovery.
针对被忽视热带病(NTD)药物研发的高通量筛选(HTS)工作近来受到了更多关注,因为已有多项举措开始尝试减少这类传染病在新型且临床可接受疗法方面的不足。高通量筛选主要采用两种基本方法,即基于细胞的筛选和体外靶点导向筛选。这两种方法都存在问题;例如,基于细胞的筛选无法揭示所作用的一个或多个靶点,而体外方法缺乏细胞环境。此外,这两种方法在技术上都具有挑战性、成本高昂且难以小型化以用于超高通量筛选[(u)HTS]。基于酵母的系统的应用可能会克服其中一些问题,并为在真核细胞环境中进行靶点导向筛选提供一个具有成本效益的平台。在此,我们综述了可用于基于酵母细胞的靶点导向筛选方案的技术的优点和局限性,并讨论了这些技术如何开始应用于被忽视热带病的药物研发。