万虹,龚守良,刘树铮.低剂量辐射对小鼠下丘脑神经元信号传递的影响[J].中华放射医学与防护杂志,2002,22(4):260-262.WAN Hong,GONG Shouliang,LIU Shuzheng.Effects of low dose radiation on signal transduction of neurons in mouse hypothalamus[J].Chin J Radiol Med Prot,2002,22(4):260-262
低剂量辐射对小鼠下丘脑神经元信号传递的影响
Effects of low dose radiation on signal transduction of neurons in mouse hypothalamus
投稿时间:2001-11-12  
DOI:
中文关键词:  低剂量辐射  下丘脑  信号传递
英文关键词:Low dose radiation  Hypothalamus  Signal transduction
基金项目:国家自然科学基金资助项目(395701884)
作者单位
万虹 100050, 北京市神经外科研究所 
龚守良 吉林大学卫生部放射生物学重点实验室 
刘树铮 吉林大学卫生部放射生物学重点实验室 
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中文摘要:
      目的 探讨低剂量辐射对小鼠下丘脑神经元信号传递的影响。方法 应用竞争蛋白结合分析、放射免疫分析、原位杂交和免疫组化方法观察75mGyX射线全身照射对小鼠下丘脑神经元cAMP和cGMP含量及cfosmRNA、Fos蛋白和前阿黑皮素(POMC)mRNA表达的影响。结果 照射后15min小鼠下丘脑cAMP含量立刻明显增高并达峰值,1h回复接近假照组水平;cGMP含量的变化与cAMP含量的变化基本相反,而cAMP/cGMP比值的变化与cAMP含量的变化基本一致。照后15min下丘脑神经元出现c-fosmRNA表达;照后8hFos蛋白表达达峰值;POMCmRNA表达在照后1h明显降低。结论 低剂量辐射可激活小鼠下丘脑神经元,促进其信号传递,以及下调下丘脑1垂体1肾上腺皮质轴的功能。
英文摘要:
      Objective Effects of low dose radiation on signal transduction of neurons in mouse hypothalamus were investigated. Methods In the present study competitive protein binding assay, radioimmunoassay, in situ hybridization and immunohistochemistry were used to observe the effects of whole-body irradiation with 75 mGy X-rays on the contents of cAMP and cGMP and the expressions of c-fos mRNA, Fos protein and proopiomelanocortin (POMC) mRNA in neurons of mouse hypothalamus. Results The results showed that cAMP content in mouse hypothalamus immediately increased significantly and reached the peak value at 15 min after irradiation, and then returned to near the sham-irradiation level 1 h after irradiation;the changes of cGMP content were basically opposite to those of cAMP content, while the changes of cAMP/cGMP ratio were basically consistent with those of cAMP content.The expression of c-fos mRNA in the neurons of hypothalamus appeared 15 min after irradiation;The expression of Fos protein reached its peak value 8 h after irradiation.The expression ofPOMC mRNA decreased significantly 1 h after irradiation. Conclusion These findings implicate that low dose radiation may potentiate the activity of the neurons in mouse hypothalamus, expedite their signal transduction, and down-regulate the functions of hypothalamus-pituitary-adrenocortical axis.
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