Single-dose Administration of Recombinant Human Thrombopoietin Enhances Survival and Hematopoietic Reconstruction in Canines Irradiated with 3 Gy Gamma Radiation.

IF 2.5 3区 医学 Q2 BIOLOGY
Jinkun Yang, Hao Luan, Xing Shen, Guolin Xiong, Xun Wang, Xuewen Zhang, Wenyu Ji, Ying Jiang, Yangyang Dai, Enqi Zhang, Hongling Ou, Yuwen Cong, Xinru Wang, Shuang Xing, Zuyin Yu
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Abstract

We conducted this study to investigate the radioprotective effects of recombinant human thrombopoietin (rhTPO) on beagle dogs irradiated with 3.0 Gy 60Co gamma rays. Fifteen healthy adult beagles were randomly assigned to a control group with alleviating care, and 5 and 10 μg/kg rhTPO treatment group. All animals received total-body irradiation using 60Co γ-ray source at a dose of 3.0 Gy (dose rate was 69.1 cGy/min). The treatment group received intramuscular injection of rhTPO 5 and 10 μg/kg at 2 h postirradiation, and the control group was administrated the same volume of normal saline. The survival rate, clinical signs, peripheral hemogram, serum biochemistry, and histopathological examination of animals in each group were assessed. Single administration of 10 μg/kg rhTPO at 2 h postirradiation promoted the recovery of multilineage hematopoiesis and improved the survival rate of beagles irradiated with 3 Gy 60Co γ rays. The administration of 10 μg/kg rhTPO alleviated fever and bleeding, reduced the requirement for supportive care, and may have mitigated multiple organ damage.

单剂量注射重组人血小板生成素可提高接受 3 Gy 伽马射线照射的犬的存活率和造血重建能力
本研究旨在探讨重组人血小板生成素(rhTPO)对接受 3.0 Gy 60Co 伽马射线照射的小猎犬的辐射保护作用。15 只健康的成年比格犬被随机分配到对照组和 5 和 10 μg/kg rhTPO 治疗组。所有动物均接受 60Co γ 射线源全身照射,剂量为 3.0 Gy(剂量率为 69.1 cGy/min)。治疗组在辐照后 2 小时肌肉注射 rhTPO 5 和 10 μg/kg,对照组注射相同剂量的生理盐水。对各组动物的存活率、临床症状、外周血象、血清生化和组织病理学检查进行评估。在辐照后2小时单次给予10 μg/kg rhTPO可促进多系造血的恢复,并提高接受3 Gy 60Co γ射线辐照的小猎犬的存活率。服用10 μg/kg rhTPO可减轻发热和出血,减少对支持性护理的需求,并可能减轻多器官损伤。
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来源期刊
Radiation research
Radiation research 医学-核医学
CiteScore
5.10
自引率
8.80%
发文量
179
审稿时长
1 months
期刊介绍: Radiation Research publishes original articles dealing with radiation effects and related subjects in the areas of physics, chemistry, biology and medicine, including epidemiology and translational research. The term radiation is used in its broadest sense and includes specifically ionizing radiation and ultraviolet, visible and infrared light as well as microwaves, ultrasound and heat. Effects may be physical, chemical or biological. Related subjects include (but are not limited to) dosimetry methods and instrumentation, isotope techniques and studies with chemical agents contributing to the understanding of radiation effects.
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