期刊文献+

Change of MicroRNA-134,CREB and p-CREB expression in epileptic rat 被引量:5

Change of MicroRNA-134,CREB and p-CREB expression in epileptic rat
下载PDF
导出
摘要 Objective:To To investigate the changes of MicroRNA-134,CREB and p-CREB expression in epileptic rat brains in order to elucidate the molecular mechanisms of epilepsy,providing new ideas for clinical treatment.Methods:Sixty-four Spraque-Dawley(SD)rats were divided into groups randomly,including control group,six hours after seizure group,24-hour group,threeday group,one-week group,two-week group,four-week group,and eight-week group.All groups were placed under a pilocarpine-induced epilepsy model except the control group,and all rats were decapitated in different points of time.Brain specimens were taken for quantitative PCR experiments,immunohistochemistry and Western blot experiments.The results of the epilepsy model groups and the control group were compared.Results:There were no significant differences between the six hours after seizure group,the 24-hour group and the control group about the MicroRNA-134 levels.MicroRNA-134 in the hippocampus tissue of the three-day group significantly reduced compared with the control group;same result was observed with the one-week,two-week,four-week and eight-week groups.The CREB and p-CREB levels in the three-day group's rat hippocampus significantly increased compared with the control group;and the high levels of CREB and p-CREB were constantly maintained in the one-week,two-week,four-week and eight-week groups.Conclusions:The MicroRNA-134 level of the epileptic rat hippocampus is significantly lower than normal after three days,and continues to maintain a low level:while CREB and p-CREB levels are rsignificantly increased after three days,and continue to remain at a high level.MicroRNA-134 plays a role in inhibiting synaptic plasticity by inhibiting CREB and p-CREB expressions. Objective:To To investigate the changes of MicroRNA-134,CREB and p-CREB expression in epileptic rat brains in order to elucidate the molecular mechanisms of epilepsy,providing new ideas for clinical treatment.Methods:Sixty-four Spraque-Dawley(SD)rats were divided into groups randomly,including control group,six hours after seizure group,24-hour group,threeday group,one-week group,two-week group,four-week group,and eight-week group.All groups were placed under a pilocarpine-induced epilepsy model except the control group,and all rats were decapitated in different points of time.Brain specimens were taken for quantitative PCR experiments,immunohistochemistry and Western blot experiments.The results of the epilepsy model groups and the control group were compared.Results:There were no significant differences between the six hours after seizure group,the 24-hour group and the control group about the MicroRNA-134 levels.MicroRNA-134 in the hippocampus tissue of the three-day group significantly reduced compared with the control group;same result was observed with the one-week,two-week,four-week and eight-week groups.The CREB and p-CREB levels in the three-day group’s rat hippocampus significantly increased compared with the control group;and the high levels of CREB and p-CREB were constantly maintained in the one-week,two-week,four-week and eight-week groups.Conclusions:The MicroRNA-134 level of the epileptic rat hippocampus is significantly lower than normal after three days,and continues to maintain a low level:while CREB and p-CREB levels are rsignificantly increased after three days,and continue to remain at a high level.MicroRNA-134 plays a role in inhibiting synaptic plasticity by inhibiting CREB and p-CREB expressions.
出处 《Asian Pacific Journal of Tropical Medicine》 SCIE CAS 2015年第4期292-298,共7页 亚太热带医药杂志(英文版)
基金 supported by National Natural Science Foundation(No:81371439)
关键词 MicroRNA-134 CREB P-CREB QUANTITATIVE PCR WESTERN BLOT IMMUNOHISTOCHEMISTRY MicroRNA-134 CREB p-CREB Quantitative PCR Western blot Immunohistochemistry
  • 相关文献

参考文献5

二级参考文献67

  • 1陈迁,熊志奇.NMDA受体NR2A亚单位特异性地参与脑损伤导致的颞叶癫痫病[J].中国基础科学,2007(2):22-27. 被引量:36
  • 2肖波,江利敏.癫痫的发病机制[J].临床内科杂志,2004,21(9):577-580. 被引量:25
  • 3Frotscher M, Jonas P, Sloviter RS. Synapses formed by normal and abnormal hippocampal mossy fibers[J]. Cell Tissue Res, 2006, 326(2) : 361-367.
  • 4Cavazos JE, Cross DJ. The role of synaptic reorganization in mesial temporal lobe epilepsy[J]. Epilepsy Behav, 2006, 8(3): 483-493.
  • 5Holtmaat AJ, Gorter JA, De WitJ, et al. Transient downregulation of Sema3A mRNA in a rat model for temporal lobe epilepsy. A novel molecular event potentially contributing to mossy fiber sprouting [J]. Exp Neurol, 2003, 182(1) :142-150.
  • 6Glien M, Brandt C, Potschka H, et al. Repeated lowdose treatment of rats with pilocarpine: low mortality but high proportion of rats developing epilepsy[J]. Epilepsy Res, 2001, 46(2) :111-119.
  • 7Ricine RJ. Modification of seizure activity by electrical stimulation. Ⅰ. After-discharge threshold [J]. Elec troencephalogr Clin Neurophysiol, 1972, 32 (3) : 269- 279.
  • 8Holmes GL, Sarkisian M, Ben-Ari Y, et al. Mossy fiber sprouting after recurrent seizures during early development in rats[J]. J Comp Neurol, 1999, 404 (4) :537-553.
  • 9Goshima Y, Ito T, Sasaki Y, et al. Semaphorins as signals for cell repulsion and invasion [J]. J Clin Invest, 2002,109 (8) : 993-998.
  • 10Schmidt EF, Strittmatter S. The CRMP family of proteins and their role in Sema3A signaling[J]. Adv Exp Med Biol,2007, 600: 1-11.

共引文献18

同被引文献22

引证文献5

二级引证文献18

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部