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Optimized automated data analysis for the cytokinesis‐block micronucleus assay using imaging flow cytometry for high throughput radiation biodosimetry

机译:使用成像流式细胞仪进行高通量放射生物剂量测定对胞质阻滞微核分析进行优化的自动化数据分析

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摘要

The cytokinesis‐block micronucleus (CBMN) assay is a well‐established technique that can be employed in triage radiation biodosimetry to estimate whole body doses of radiation to potentially exposed individuals through quantitation of the frequency of micronuclei (MN) in binucleated lymphocyte cells (BNCs). The assay has been partially automated using traditional microscope‐based methods and most recently has been modified for application on the ImageStreamX (ISX) imaging flow cytometer. This modification has allowed for a similar number of BNCs to be automatically scored as compared to traditional microscopy in a much shorter time period. However, the MN frequency measured was much lower than both manual and automated slide‐based methods of performing the assay. This work describes the optimized analysis template which implements newly developed functions in the IDEAS® data analysis software for the ISX that enhances specificity for BNCs and increases the frequency of scored MN. A new dose response calibration curve is presented in which the average rate of MN per BNC is of similar magnitude to those presented in the literature using automated CBMN slide scoring methods. In addition, dose estimates were generated for nine irradiated, blinded samples and were found to be within ±0.5 Gy of the delivered dose. Results demonstrate that the improved identification accuracy for MN and BNCs in the ISX‐based version of the CBMN assay will translate to increased accuracy when estimating unknown radiation doses received by exposed individuals following large‐scale radiological or nuclear emergencies. © 2016 The Authors. Cytometry Part A published by Wiley Periodicals, Inc. on behalf of ISAC
机译:胞质分裂阻滞微核(CBMN)测定法是一项成熟的技术,可用于分流放射生物剂量测定法,通过定量双核淋巴细胞(BNC)中的微核(MN)频率来估算潜在暴露个体的全身辐射剂量)。该测定已使用基于传统显微镜的方法部分自动化,并且最近经过修改,可用于ImageStream X (IS X )成像流式细胞仪。与传统显微镜相比,此修改允许在短得多的时间内自动对相似数量的BNC进行评分。但是,测得的MN频率远低于手动和自动基于载玻片的测定方法。这项工作描述了优化的分析模板,该模板在IDEAS ®数据分析软件中为IS X 实施了新开发的功能,从而增强了BNC的特异性并增加了得分的MN的频率。提出了一条新的剂量响应校准曲线,其中每个BNC的MN的平均速率与使用自动化CBMN幻灯片评分方法的文献中给出的幅度相似。此外,针对九个受辐照的盲样品进行了剂量估算,发现其在所输送剂量的±0.5 Gy范围内。结果表明,在基于IS X 的CBMN分析版本中,MN和BNC的识别准确度的提高将转化为准确性,当估计大规模放射或核辐射后暴露的个体所接收的未知辐射剂量时紧急情况。 ©2016作者。 Wiley Periodicals,Inc.代表ISAC发布的细胞计数A部分

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