首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >NIST/ISAC standardization study: Variability in assignment of intensity values to fluorescence standard beads and in cross calibration of standard beads to hard dyed beads
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NIST/ISAC standardization study: Variability in assignment of intensity values to fluorescence standard beads and in cross calibration of standard beads to hard dyed beads

机译:NIST / ISAC标准化研究:将强度值分配给荧光标准珠子以及将标准珠子与硬染珠子进行交叉校准的可变性

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Results from a standardization study cosponsored by the International Society for Advancement of Cytometry (ISAC) and the US National Institute of Standards and Technology (NIST) are reported. The study evaluated the variability of assigning intensity values to fluorophore standard beads by bead manufacturers and the variability of cross calibrating the standard beads to stained polymer beads (hard-dyed beads) using different flow cytometers. Hard dyed beads are generally not spectrally matched to the fluorophores used to stain cells, and spectral response varies among flow cytometers. Thus if hard dyed beads are used as fluorescence calibrators, one expects calibration for specific fluorophores (e.g., FITC or PE) to vary among different instruments. Using standard beads surface-stained with specific fluorophores (FITC, PE, APC, and Pacific Blue?), the study compared the measured intensity of fluorophore standard beads to that of hard dyed beads through cross calibration on 133 different flow cytometers. Using robust CV as a measure of variability, the variation of cross calibrated values was typically 20% or more for a particular hard dyed bead in a specific detection channel. The variation across different instrument models was often greater than the variation within a particular instrument model. As a separate part of the study, NIST and four bead manufacturers used a NIST supplied protocol and calibrated fluorophore solution standards to assign intensity values to the fluorophore beads. Values assigned to the reference beads by different groups varied by orders of magnitude in most cases, reflecting differences in instrumentation used to perform the calibration. The study concluded that the use of any spectrally unmatched hard dyed bead as a general fluorescence calibrator must be verified and characterized for every particular instrument model. Close interaction between bead manufacturers and NIST is recommended to have reliable and uniformly assigned fluorescence standard beads.
机译:报告了由国际细胞计数学会(ISAC)和美国国家标准与技术研究院(NIST)共同发起的标准化研究的结果。这项研究评估了珠子制造商为荧光团标准珠子分配强度值的变异性,以及使用不同的流式细胞仪将标准珠子与染色的聚合物珠子(硬染色的珠子)进行交叉校准的变异性。硬染色的珠通常在光谱上与用于染色细胞的荧光团光谱不匹配,并且光谱响应在流式细胞仪之间有所不同。因此,如果将硬染的珠子用作荧光校准剂,则人们希望特定荧光团(例如FITC或PE)的校准在不同的仪器中有所不同。使用在表面上涂有特定荧光团(FITC,PE,APC和Pacific Blue?)的标准珠,该研究通过在133种不同的流式细胞仪上进行交叉校准,比较了荧光团标准珠和硬染珠的强度。使用鲁棒的CV作为变异性的度量,对于特定检测通道中的特定硬染珠,交叉校准值的变异通常为20%或更大。不同仪器模型之间的差异通常大于特定仪器模型中的差异。作为研究的一部分,NIST和四家珠子制造商使用了NIST提供的协议和经过校准的荧光团溶液标准品来为荧光团珠子分配强度值。在大多数情况下,由不同组分配给参考磁珠的值变化了几个数量级,反映了用于执行校准的仪器的差异。研究得出的结论是,对于每种特定的仪器型号,必须验证并使用任何光谱上不匹配的硬染色珠子作为常规荧光校准剂,并对其进行表征。建议磁珠制造商与NIST之间密切互动,以获取可靠且分配均匀的荧光标准磁珠。

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