Department of Medicine/Hematology Oncology, Indiana University School of Medicine, Indianapolis, IN, USA.
Department of Microbiology & Immunology and Department of Medicine/Hematology Oncology, Indiana University School of Medicine, Indianapolis, IN, USA.
Methods Mol Biol. 2023;2567:251-262. doi: 10.1007/978-1-0716-2679-5_16.
The hematopoietic system is one of the most sensitive tissues to ionizing radiation, and radiation doses from 2 to 10 gray can result in death from bleeding and infection if left untreated. Reviewing the range of radiation doses reported in the literature that result in similar lethality highlights the need for a more consistent model that would allow a better comparison of the hematopoietic acute radiation syndrome (H-ARS) studies carried out in different laboratories. Developing a murine model of H-ARS to provide a platform suited for efficacy testing of medical countermeasures (MCM) against radiation should include a review of the Food and Drug Administration requirements outlined in the Animal Rule. The various aspects of a murine H-ARS model found to affect consistent performance will be described in this chapter including strain, sex, radiation type and dose, mouse restraint, and husbandry.
造血系统是对电离辐射最敏感的组织之一,如果不进行治疗,2 至 10 戈瑞的辐射剂量可导致出血和感染而死亡。回顾文献中报告的导致类似致死率的辐射剂量范围,突出表明需要更一致的模型,以便更好地比较在不同实验室进行的造血急性辐射综合征 (H-ARS) 研究。开发一种 H-ARS 小鼠模型,为针对辐射的医疗对策 (MCM) 的疗效测试提供一个平台,应包括审查食品和药物管理局在动物规则中概述的要求。本章将描述影响一致性能的各种 H-ARS 小鼠模型方面,包括品系、性别、辐射类型和剂量、小鼠固定和饲养。