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机构间针对急性辐射暴露动物模型的方法。

Interagency approaches to animal models for acute radiation exposure.

机构信息

Biomedical Advanced Research and Development Authority (BARDA), Office of the Assistant Secretary for Preparedness and Response (ASPR), US Department of Health and Human Services (HHS), Washington, DC, USA.

Biological and Physical Sciences Division, NASA Headquarters, Washington, DC, USA.

出版信息

Int J Radiat Biol. 2021;97(sup1):S2-S5. doi: 10.1080/09553002.2021.2002661. Epub 2021 Dec 2.

Abstract

Ionizing radiation can cause devastating injuries including hemorrhage, immune suppression, increased susceptibility to infection, and death. Medical countermeasures (MCMs) that address and mitigate radiation-induced injuries are the most important tools for countering the consequences of radiation exposure. Likewise, in matters of public health security, the development and advancement of radiological MCMs are fundamental for establishing an effective response to radiological and nuclear threats. United States Government agencies such as the Biomedical Advanced Research and Development Authority (BARDA), the National Institute of Allergy and Infectious Diseases (NIAID), and the National Aeronautics and Space Administration (NASA) have dedicated significant efforts to advance the development of MCMs to treat radiation injury and facilitate their introduction into the public sphere. Due to the severe nature of radiation injuries, clinical trials are unethical. Therefore, nonclinical models that accurately replicate clinical manifestations of ionizing radiation injury observed in humans are essential to MCM advancement. The most frequently used nonclinical models of radiation injury are rodents and non-human primates (NHPs). These species reproduce many aspects of human disease caused by ionizing radiation and have been pivotal for the development and licensure of radiological MCMs. Despite these successes, model drawbacks have prompted the exploration and development of additional nonclinical models. Minipigs and rabbits show promise as acceptable models of radiation injury and demonstrate the potential to contribute significantly to MCM advancement. This collection of research showcases the capabilities of minipigs and rabbits in mirroring clinically relevant aspects of radiation-induced disease and documents the potential value these models may hold for radiological and nuclear MCM research. Together, these government-funded studies represent advances in radiological MCM development that can facilitate the emergence of cutting-edge technologies.

摘要

电离辐射可导致严重损伤,包括出血、免疫抑制、易感染和死亡。用于治疗和减轻辐射损伤的医疗对策(MCM)是应对辐射暴露后果的最重要工具。同样,在公共卫生安全方面,放射性 MCM 的开发和推进对于建立应对放射性和核威胁的有效反应至关重要。美国政府机构,如生物医学高级研究与发展局(BARDA)、国家过敏和传染病研究所(NIAID)和国家航空航天局(NASA),都投入了大量精力来推进 MCM 的开发,以治疗辐射损伤,并促进其进入公共领域。由于辐射损伤的严重性,临床试验是不道德的。因此,准确复制人类观察到的电离辐射损伤临床表现的非临床模型对于 MCM 的推进至关重要。最常用于辐射损伤的非临床模型是啮齿动物和非人类灵长类动物(NHPs)。这些物种再现了许多由电离辐射引起的人类疾病的方面,并且对于放射性 MCM 的开发和许可至关重要。尽管取得了这些成功,但模型的缺点促使人们探索和开发其他非临床模型。小型猪和兔显示出作为辐射损伤可接受模型的潜力,并展示了为 MCM 推进做出重大贡献的潜力。本研究集展示了小型猪和兔在模拟与辐射诱导疾病相关的临床相关方面的能力,并记录了这些模型在放射性和核 MCM 研究中可能具有的潜在价值。这些政府资助的研究代表了放射性 MCM 开发的进展,可以促进尖端技术的出现。

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