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小剂量γ射线累积照射对大鼠尿液中小分子代谢物影响

Effects of small dose accumulative γ-irradiation on the small molecular metabolites in rats urine
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摘要 目的探讨小剂量137Csγ射线累积照射对大鼠尿液中小分子代谢物的影响。方法无特定病原体级健康雄性成年SD大鼠40只,随机分为对照组和照射组,每组20只。照射组大鼠采用137Csγ射线照射,吸收剂量率为0. 353 m Gy/min,每天累积照射0. 083 3 Gy,每3天累积剂量为0. 25 Gy;对照组大鼠不作任何处理。分别于照射前1 d和照射开始后第3、6、9、12 d收集大鼠尿液,对照组与照射组开始照射后第6 d同步收集尿样。采用核磁共振技术对大鼠尿样进行检测,结合主成分分析法和偏最小二乘法判别法,分析对照组与各剂量组大鼠尿液中小分子代谢物的差异。结果小剂量γ射线累积照射后,各剂量亚组大鼠尿液中小分子代谢物发生了变化,各剂量组共发现了5种共同差异代谢物,分别为糖类、瓜氨酸、牛磺酸、柠檬酸盐和尿嘧啶。4个剂量亚组大鼠尿中5种差异代谢物相对水平分别高于对照组(P <0. 05);其中牛磺酸相对水平与累积剂量呈正相关关系(P <0. 05)。结论小剂量γ射线累积照射可造成大鼠尿液中小分子代谢物扰动。 Objective To observe the effects of accumulative Cs-137(137 Cs) γ irradiation at small dose on small molecular metabolites in rats urine. Methods 40 specific pathogens free grade healthy male SD rats were divided into control group and irradiated group with 20 rats in each group. The irradiated group was irradiated by137 Cs γ-ray at absorbed dose rate of0. 353 m Gy/min. The accumulated dose of every day was 0. 083 3 m Gy. The control group was not irradiated. Urine of irradiated group was collected at first day before irradiation and 3 rd,6 th,9 th,12 th day after radiation commence. Urine of control group was collected at 6 th day after radiation commence. The accumulated doses were 0. 00,0. 25,0. 50,0. 75,1. 00 Gy consequently. Urine of control group and irradiated group were collected at the same time. Techniques of 1 H-NMR combined with principal components analysis( PCA) and partial least square discriminate analysis( PLS-DA) were used to compare the metabolite disparity of different groups. Results The results demonstrated obviously differences in urine metabolites after irradiation. There were five kind common different metabolites at different dose. They were carbohydrate,citruline,taurine,citric acid and uracil accordingly. The relative contents of five metabolites at different dose group were higher than those of the control group( P < 0. 05). The relative contents of taurine has the positive proportion with accumulated dose,the dose-effect relationship was ^y = 0. 004-0. 015 x + 0. 058 x2( R20. 8821). Conclusion There are some changes in small molecular metabolites about rats urine before and after small dose accumulative γ-irradiation.
作者 张慧芳 任越 王宏力 胡波 张忠新 王超 郭月凤 ZHANG Huifang;REN Yue;WANG Hongli;HU bo;ZHANG Zhongxin;WANG Chao;GUO Yuefeng(China Institute of Atomic Energy,Beijing 102413 China;China Institute for Radiation Protection)
出处 《中国辐射卫生》 2018年第5期437-441,共5页 Chinese Journal of Radiological Health
关键词 小剂量 小分子代谢物 核磁共振 主成分分析 偏最小二乘法 Small Dose Small Molecular Metabolites Nuclear Resonance Spectroscopy PCA PLS-DA
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  • 1朱勇飞,张天宝.代谢组学在毒理学研究中的应用[J].国外医学(卫生学分册),2005,32(3):156-159. 被引量:13
  • 2赵宇,谢培山,梁逸曾,杨辉,易伦朝.中药枳壳HPLC指纹图谱分析及化学模式识别分类研究[J].中国药学杂志,2005,40(11):812-815. 被引量:17
  • 3聂磊,胡震,罗国安,王义明.一种对照指纹图谱生成的新方法:主成分分析法[J].中成药,2005,27(6):621-625. 被引量:13
  • 4Nicholson J K, Lindon J C, Holmes E. "Metabonomics": understanding the metabolic responses of living systems to pathophysiological stimuli via multivariate statistical analysis of biological NMR spectroscopic data [J]. Xeno- biotica, 1999, 29(11): 1181-1189.
  • 5Lindon J C, Nicholson J K, Holmes E, et al. Metabonom- ics: Metabolic processes studied by NMR spectroscopy of biofluids. Concepts Magn Reson, 2000, 12(5): 289-320.
  • 6Bolland M E, Stanley E G, Lindon J C, et al. NMR-based metabonomics approaches for evaluating physiological influences on biofluid coposition. NMR Biomed, 2005, 18(3): 143-162.
  • 7Constantinous M A, Papakonstantinous E, Spraul M, et al. ^1H NMR-based metabonomics for the diagnosis of inborn errors of metabolism in urine. Analytica Chimica Acta, 2005, 542(2): 169-177.
  • 8Kazuki Akira a, Shigenori Masu b, Misako Imachic, et al. ^1H NMR based metabonomic analysis of urine from young spontaneously hypertensive rats. Journal of Pharmaceutical and Biomedical Analysis, 2008, 46(3): 550-556.
  • 9Holmes E, Nicholson J K, Nicholls A W, et al. The identi- fication of novel biomarkers of renal toxicity using auto- matic data reduction techniques and PCA of proton NMR spectra of urine. Chemometri Intell Lab Sys, 1998, 44(1):245-255.
  • 10Holmes E, Caddick S, Lindon J C, et al. ^1H and ^2H NMR spectroscopic studies on the metabolism and biochemical effects of 2-bromoethanamine in the rat. Biochem Phar- macol, 1995, 49(10): 1349-1359.

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