IPW-5371 mitigates the delayed effects of acute radiation exposure in WAG/RijCmcr rats when started 15 days after PBI with bone marrow sparing.

IF 2.1 4区 医学 Q2 BIOLOGY International Journal of Radiation Biology Pub Date : 2023-01-01 Epub Date: 2023-02-15 DOI:10.1080/09553002.2023.2173825
Brian L Fish, Barry Hart, Tracy Gasperetti, Jayashree Narayanan, Feng Gao, Dana Veley, Lauren Pierce, Heather A Himburg, Thomas MacVittie, Meetha Medhora
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Abstract

Purpose: To test IPW-5371 for the mitigation of the delayed effects of acute radiation exposure (DEARE). Survivors of acute radiation exposure are at risk for developing delayed multi-organ toxicities; however, there are no FDA-approved medical countermeasures (MCM) to mitigate DEARE.

Methods: WAG/RijCmcr female rat model of partial-body irradiation (PBI), by shielding part of one hind leg, was used to test IPW-5371 (7 and 20 mg kg-1 d-1) for mitigation of lung and kidney DEARE when started 15 d after PBI. Rats were fed known amounts of IPW-5371 using a syringe, instead of delivery by daily oral gavage, sparing exacerbation of esophageal injury by radiation. The primary endpoint, all-cause morbidity was assessed over 215 d. Secondary endpoints: body weight, breathing rate and blood urea nitrogen were also assessed.

Results: IPW-5371 enhanced survival (primary endpoint) as well as attenuated secondary endpoints of lung and kidney injuries by radiation.

Conclusion: To provide a window for dosimetry and triage, as well as avoid oral delivery during the acute radiation syndrome (ARS), the drug regimen was started at 15 d after 13.5 Gy PBI. The experimental design to test mitigation of DEARE was customized for translation in humans, using an animal model of radiation that was designed to simulate a radiologic attack or accident. The results support advanced development of IPW-5371 to mitigate lethal lung and kidney injuries after irradiation of multiple organs.

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IPW-5371 可减轻急性辐照对 WAG/RijCmcr 大鼠的延迟效应,如果在 PBI 后 15 天开始使用,则可保留骨髓。
目的:测试 IPW-5371 对减轻急性辐照延迟效应(DEARE)的作用。急性辐照幸存者有可能出现延迟性多器官毒性;然而,目前还没有美国食品及药物管理局批准的医疗对策(MCM)来减轻延迟性多器官毒性:方法:使用 WAG/RijCmcr 雌性大鼠部分全身辐照(PBI)模型,通过屏蔽部分后腿,测试 IPW-5371(7 毫克和 20 毫克 kg-1 d-1)在部分全身辐照 15 天后开始对肺部和肾脏 DEARE 的缓解作用。用注射器给大鼠喂食已知量的 IPW-5371,而不是每天口服,从而避免了辐射对食管损伤的加剧。在 215 天内对主要终点(全因发病率)进行评估。还评估了次要终点:体重、呼吸频率和血尿素氮:结果:IPW-5371提高了生存率(主要终点),并减轻了辐射对肺和肾的损伤:结论:为了给剂量测定和分流提供一个窗口,并避免在急性辐射综合征(ARS)期间口服给药,在 13.5 Gy PBI 后 15 d 开始用药。测试减轻 DEARE 的实验设计是为在人体中转化而定制的,使用的是模拟放射性攻击或事故的辐射动物模型。这些结果支持了 IPW-5371 在减轻多器官辐照后致命的肺和肾损伤方面的先进开发。
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来源期刊
CiteScore
5.00
自引率
11.50%
发文量
142
审稿时长
3 months
期刊介绍: The International Journal of Radiation Biology publishes original papers, reviews, current topic articles, technical notes/reports, and meeting reports on the effects of ionizing, UV and visible radiation, accelerated particles, electromagnetic fields, ultrasound, heat and related modalities. The focus is on the biological effects of such radiations: from radiation chemistry to the spectrum of responses of living organisms and underlying mechanisms, including genetic abnormalities, repair phenomena, cell death, dose modifying agents and tissue responses. Application of basic studies to medical uses of radiation extends the coverage to practical problems such as physical and chemical adjuvants which improve the effectiveness of radiation in cancer therapy. Assessment of the hazards of low doses of radiation is also considered.
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