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首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Fluorescence and Light Scatter Calibration Allow Comparisons of Small Particle Data in Standard Units across Different Flow Cytometry Platforms and Detector Settings
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Fluorescence and Light Scatter Calibration Allow Comparisons of Small Particle Data in Standard Units across Different Flow Cytometry Platforms and Detector Settings

机译:荧光和光散射校准允许在不同流式细胞术平台和探测器设置上以标准单元中的小粒子数据进行比较

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Flow cytometers have been utilized for the analysis of submicron-sized particles since the late 1970s. Initially, virus analyses preceded extracellular vesicle (EV), which began in the 1990s. Despite decades of documented use, the lack of standardization in data reporting has resulted in a growing body of literature that cannot be easily interpreted, validated, or reproduced. This has made it difficult for objective assessments of both assays and instruments, in-turn leading to significant hindrances in scientific progress, specifically in the study of EVs, where the phenotypic analysis of these submicron-sized vesicles is becoming common-place in every biomedical field. Methods for fluorescence and light scatter standardization are well established and the reagents to perform these analyses are commercially available. However, fluorescence and light scatter calibration are not widely adopted by the small particle community as methods to standardize flow cytometry (FCM) data. In this proof-of-concept study carried out as a resource for use at the CYTO2019 workshop, we demonstrate for the first-time simultaneous fluorescence and light scatter calibration of small particle data to show the ease and feasibility of this method for standardized FCM data reporting. This data was acquired using standard configuration commercial flow cytometers, with commercially available materials, published methods, and freely available software tools. We show that application of light scatter, fluorescence, and concentration calibration can result in highly concordant data between FCM platforms independent of instrument collection angle, gain/voltage settings, and flow rate; thus, providing a means of cross comparison in standard units. (c) 2020 International Society for Advancement of Cytometry
机译:自20世纪70年代后期以来,流式细胞计数已用于分析亚微米尺寸粒子。最初,病毒分析前面的细胞外囊泡(EV),该囊泡(EV)始于20世纪90年代。尽管有数十年的使用,但数据报告中缺乏标准化导致了不断增长的文学体,不能轻易解释,验证或转载。这使得对两种测定和文书的客观评估难以导致科学进步的显着障碍,特别是在EV的研究中,这些亚微米粒度的表型分析在每个生物医学中成为共同的地方场地。荧光和光散射标准化的方法很好地建立,具有这些分析的试剂是可商购的。然而,小颗粒群落作为标准化流式细胞术(FCM)数据的方法,小颗粒群落不广泛采用荧光和光散射校准。在该概念证明研究中,作为用于CYTO2019研讨会的资源进行,我们向小粒子数据的第一次同时荧光和光散射校准显示,显示了该方法的标准化FCM数据的缓解和可行性报告。使用标准配置商业流式细胞仪获取该数据,具有市售的材料,已发布的方法和自由可用的软件工具。我们表明光散射,荧光和浓度校准的应用可能导致FCM平台之间的高度交响数据,而独立于仪器收集角度,增益/电压设置和流量;因此,在标准单元中提供交叉比较的手段。 (c)2020国际促进细胞计中的国际社会

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