MetaSystems Hard & Software GmbH, Altlussheim, Germany.
ASELL, LLC, Owings Mills, MD, USA.
Radiat Prot Dosimetry. 2023 Sep 18;199(14):1516-1519. doi: 10.1093/rpd/ncad027.
Major nuclear accidents can result in many casualties, and it is important to assess the absorbed radiation dose to support treatment decisions. Biological dosimetry (BD) allows retrospective determination of dose using biological markers. To achieve consistent cytogenetic assay results across labs, the current practice requires each lab to generate periodic, unique calibration curves using in vitro dose-effect experiments. Here, we present CytoRADx™, a standardized biodosimetry system that integrates automated dose calculation in a high-throughput platform without the need for lab-specific calibration curves. CytoRADx consists of an improved, standardized Cytokinesis Block Micronucleus assay combined with automated analysis utilizing an established slide scanning device. We tested CytoRADx for accuracy and reproducibility across different instruments, sites, days and operators. Our results demonstrate that CytoRADx eliminates the time-consuming, lab-specific calibration curves, allowing multiple laboratories to obtain consistent results and to distribute the testing burden in the event of a large-scale accident.
重大核事故可能导致大量人员伤亡,评估吸收剂量对于支持治疗决策非常重要。生物剂量学(BD)允许使用生物标志物回溯性地确定剂量。为了在实验室之间获得一致的细胞遗传学检测结果,目前的实践要求每个实验室使用体外剂量效应实验生成定期的、独特的校准曲线。在这里,我们提出了 CytoRADx™,这是一种标准化的生物剂量测定系统,它在无需实验室特定校准曲线的高通量平台中集成了自动化的剂量计算。CytoRADx 由改良的、标准化的细胞有丝分裂阻滞微核检测与利用既定的载玻片扫描设备进行的自动化分析组成。我们测试了 CytoRADx 在不同仪器、地点、日期和操作人员之间的准确性和可重复性。我们的结果表明,CytoRADx 消除了耗时的、实验室特定的校准曲线,允许多个实验室获得一致的结果,并在发生大规模事故时分担检测负担。