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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >A Metabolomic Serum Signature from Nonhuman Primates Treated with a Radiation Countermeasure, Gamma-tocotrienol, and Exposed to Ionizing Radiation
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A Metabolomic Serum Signature from Nonhuman Primates Treated with a Radiation Countermeasure, Gamma-tocotrienol, and Exposed to Ionizing Radiation

机译:从非人类代谢组血清签名灵长类动物辐射处理对策,Gamma-tocotrienol,暴露于电离辐射

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The search for and development of radiation countermeasures to treat acute lethal radiation injury has been underway for the past six decades, resulting in the identification of multiple classes of radiation countermeasures. However, to date only granulocyte colony-stimulating factor (Neupogen) and PEGylated granulocyte colony-stimulating factor (Neulasta) have been approved by the U.S. Food and Drug Administration for the treatment of hematopoietic acute radiation syndrome. Gamma-tocotrienol has demonstrated radioprotective efficacy in murine and nonhuman primate models. Currently, this agent is under advanced development as a radioprotector, and the authors are trying to identify its efficacy biomarkers. In this study, global metabolomic changes were analyzed using ultraperformance liquid chromatography quadrupole time-of-flight mass spectrometry. The pilot study using 16 nonhuman primates (8 nonhuman primates each in gamma-tocotrienol- and vehicle-treated groups), with samples obtained from gamma-tocotrienol-treated and irradiated nonhuman primates, demonstrates several metabolites that are altered after irradiation, including compounds involved in fatty acid beta-oxidation, purine catabolism, and amino acid metabolism. The machine-learning algorithm, Random Forest, separated control, irradiated gamma-tocotrienol-treated, and irradiated vehicle-treated nonhuman primates at 12 h and 24 h as evident in a multidimensional scaling plot. Primary metabolites validated included carnitine/acylcarnitines, amino acids, creatine, and xanthine. Overall, gamma-tocotrienol administration reduced high fluctuations in serum metabolite levels, suggesting an overall beneficial effect on animals exposed to radiation. This initial assessment also highlights the utility of metabolomics in determining underlying physiological mechanisms responsible for the radioprotective efficacy of gamma-tocotrienol.
机译:寻找和开发的辐射治疗急性致命辐射对策伤害已经进行了过去6几十年来,导致识别多个类的辐射对策。然而,到目前为止只有粒细胞集落刺激因子(Neupogen)聚乙二醇粒细胞集落刺激因子(Neulasta)已通过美国食品为治疗和药物管理局造血急性辐射综合症。Gamma-tocotrienol已经证明小鼠和非人的放射防护功效灵长类动物模型。先进的发展作为放射保护剂,作者试图识别其有效性生物标志物。使用ultraperformance变化进行了分析液相色谱四极飞行时间质谱分析。非人灵长类动物(8每个在非人灵长类动物gamma-tocotrienol vehicle-treated组),与样品来自gamma-tocotrienol-treated和辐照非人灵长类动物,演示了一些代谢物辐照后改变,包括化合物参与脂肪酸的机会,嘌呤分解代谢和氨基酸代谢。机器学习算法,随机森林,分离控制、辐照gamma-tocotrienol-treated,辐照在12 h和24 vehicle-treated非人灵长类动物h作为多维标度明显的阴谋。初级代谢产物包括验证肉碱/ acylcarnitines、氨基酸、肌酸,和黄嘌呤。政府降低血清中较高的波动代谢物水平,表明一个总体对动物暴露于有益的影响辐射。突出了代谢组学的效用确定潜在的生理机制负责辐射防护的效果gamma-tocotrienol。

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