Fraunhofer Institute Toxicology and Experimental Medicine, Nikolai-Fuchs-Str. 1, D-30625 Hannover, Germany.
Toxicol In Vitro. 2009 Dec;23(8):1570-5. doi: 10.1016/j.tiv.2009.07.007. Epub 2009 Jul 10.
Higher throughput methods, high content analysis and automated screening methods are of highest demand in drug development today. In toxicology, these strategies are becoming increasingly important, as well. Therefore, an integrated higher throughput method for the comet assay is addressed by the development presented here. The sensitivity, specificity and relevance of the comet assay as a method for determination of DNA damage in vivo and in vitro have been highlighted in many studies. Actually, efforts are made to include it in a panel of genotoxicity tests for regulatory purposes. However, the standard comet assay is a time consuming procedure due to the specific methods needed. The improvements presented here lead to a faster and easier slide-production, a smaller amount of cells needed, a higher amount of comets quantified, a fully automated analysis of comets including reanalysis, storing, visualisation and documentation possibilities using standard comet quantification models such as tail length or tail moment, and - by introduction of clearly definable selection criteria based on image analysis algorithms - clearly improve objectivity and standardization of the analysis procedure. Results prove the high reproducibility, flexibility, efficiency and suitability of the procedure as a fully automated analysis method in higher throughput genotoxicity testing in vitro.
更高通量的方法、高内涵分析和自动化筛选方法是当今药物开发的最高需求。在毒理学中,这些策略也变得越来越重要。因此,这里提出了一种集成的彗星分析高通量方法。彗星分析作为一种体内和体外 DNA 损伤检测方法的灵敏度、特异性和相关性已在许多研究中得到强调。实际上,人们正在努力将其纳入用于监管目的的遗传毒性测试组合中。然而,由于需要特定的方法,标准彗星分析是一个耗时的过程。这里提出的改进措施可加快和简化载玻片的制作过程,减少所需细胞的数量,增加可定量的彗星数量,使用标准彗星定量模型(如尾部长度或尾部矩)实现彗星的全自动分析,包括重新分析、存储、可视化和记录,并且 - 通过引入基于图像分析算法的明确可定义的选择标准 - 明显提高了分析过程的客观性和标准化。结果证明了该方法作为一种完全自动化的分析方法在体外高通量遗传毒性测试中的高重复性、灵活性、效率和适用性。