Health Secur. 2017 Nov/Dec;15(6):599-610. doi: 10.1089/hs.2017.0050. Epub 2017 Dec 1.
With the threat of future radiological or nuclear events, there is a need to model and develop new medical countermeasures for managing large-scale population exposures to radiation. The field of radiation biodosimetry has advanced far beyond its original objectives to identify new methodologies to quantitate unknown levels of radiation exposure that may be applied in a mass screening setting. New research in the areas of genomics, proteomics, metabolomics, transcriptomics, and electron paramagnetic resonance (EPR) applications have identified novel biological indicators of radiation injury from a diverse array of biological sample materials, and studies continue to develop more advanced models of radiation exposure and injury. In this article, we identify the urgent need for new biodosimetry assessment technologies, describe how biodosimetry diagnostics work in the context of a broad range of radiation exposure types and scenarios, review the current state of the science, and assess how well integrated biodosimetry resources are in the national radiological emergency response framework.
随着未来放射性或核事件的威胁,有必要建立和开发新的医学对策,以管理大规模人群暴露于辐射。辐射生物剂量学领域已经远远超出了最初的目标,即确定新的方法来定量未知水平的辐射暴露,这些方法可能适用于大规模筛选环境。基因组学、蛋白质组学、代谢组学、转录组学和电子顺磁共振(EPR)应用等领域的新研究已经从各种生物样本材料中确定了辐射损伤的新的生物指标,并且研究仍在继续开发更先进的辐射暴露和损伤模型。在本文中,我们确定了对新的生物剂量学评估技术的迫切需求,描述了生物剂量学诊断在广泛的辐射暴露类型和场景中的工作原理,回顾了科学现状,并评估了生物剂量学资源在国家放射性应急响应框架中的综合程度。