Shared FACS Facility and Department of Genetics, Stanford University, Stanford, California.
Terry Fox Laboratory, BC Cancer Agency, Vancouver, British Columbia.
Cytometry A. 2018 Nov;93(11):1087-1091. doi: 10.1002/cyto.a.23605. Epub 2018 Sep 23.
We demonstrate improved methods for making valid and accurate comparisons of fluorescence measurement capabilities among instruments tested at different sites and times. We designed a suite of measurements and automated data processing methods to obtain consistent objective results and applied them to a selection of 23 instruments at nine sites to provide a range of instruments as well as multiple instances of similar instruments. As far as we know, this study represents the most accurate methods and results so far demonstrated for this purpose. The first component of the study reporting improved methods for photoelectron scale (Spe) evaluations, which was published previously (Parks, El Khettabi, Chase, Hoffman, Perfetto, Spidlen, Wood, Moore, and Brinkman: Cytometry A 91 (2017) 232-249). Those results which were within themselves are not sufficient for instrument comparisons, so here, we use the Spe scale results for the 23 cytometers and combine them with additional information from the analysis suite to obtain the metrics actually needed for instrument evaluations and comparisons. We adopted what we call the 2+2SD limit of resolution as a maximally informative metric, for evaluating and comparing dye measurement sensitivity among different instruments and measurement channels. Our results demonstrate substantial differences among different classes of instruments in both dye response and detection sensitivity and some surprisingly large differences among similar instruments, even among instruments with nominally identical configurations. On some instruments, we detected defective measurement channels needing service. The system can be applied in shared resource laboratories and other facilities as an aspect of quality assurance, and accurate instrument comparisons can be valuable for selecting instruments for particular purposes and for making informed instrument acquisition decisions. An institutionally supported program could serve the cytometry community by facilitating access to materials, and analysis and maintaining an archive of results. © 2018 International Society for Advancement of Cytometry.
我们展示了改进的方法,可以在不同地点和时间测试的仪器之间进行荧光测量能力的有效和准确比较。我们设计了一整套测量和自动化数据处理方法,以获得一致的客观结果,并将其应用于 9 个地点的 23 种仪器,提供了一系列仪器以及多种类似仪器的实例。据我们所知,这项研究代表了迄今为止为此目的展示的最准确的方法和结果。之前已经发表了第一部分报告改进的光电离标度(Spe)评估方法的研究(Parks、El Khettabi、Chase、Hoffman、Perfetto、Spidlen、Wood、Moore 和 Brinkman:Cytometry A 91 (2017) 232-249)。这些结果本身不足以进行仪器比较,因此,在这里,我们使用 23 台细胞仪的 Spe 标度结果,并将其与分析套件中的其他信息结合起来,获得用于仪器评估和比较的实际指标。我们采用了我们所谓的分辨率 2+2SD 极限作为一种最具信息量的指标,用于评估和比较不同仪器和测量通道中的染料测量灵敏度。我们的结果表明,不同类别的仪器在染料响应和检测灵敏度方面存在很大差异,甚至在具有名义上相同配置的类似仪器之间也存在一些令人惊讶的较大差异。在某些仪器上,我们检测到需要维修的有缺陷的测量通道。该系统可以作为质量保证的一个方面,在共享资源实验室和其他设施中应用,并且准确的仪器比较可以有助于为特定目的选择仪器,以及做出明智的仪器采购决策。机构支持的计划可以通过促进获取材料、分析和维护结果档案来为细胞仪社区提供服务。© 2018 国际细胞分析促进协会。