期刊文献+

出生前后染镧对大鼠海马CREB和BDNF影响 被引量:4

Effects of exposure to lanthanum during perinatal period on CREB phosphorylation and BDNF expression in hippocampus of rats
原文传递
导出
摘要 目的探讨出生前后镧暴露对子代大鼠海马环磷酸腺苷反应元件结合蛋白(CREB)磷酸化水平、脑源性神经营养因子(BDNF)mRNA及蛋白表达影响。方法 60只Wistar雌性大鼠随机分为对照组和低、中、高剂量镧染毒组,各镧染毒组从雌鼠受孕日起到子鼠断乳后1个月通过自由饮水方式染毒,测定海马p-CREB、BDNF mRNA和蛋白表达水平。结果与对照组比较,低、中、高剂量染镧组子代大鼠海马p-CREB蛋白表达水平分别为(0.77±0.063)、(0.62±0.057)、(0.52±0.051)、BDNF mRNA表达水平分别为(0.80±0.072)、(0.56±0.090)、(0.41±0.075)及BDNF蛋白表达水平分别为(0.67±0.065)、(0.59±0.064)、(0.51±0.045)均下降(P<0.05)。结论镧可以抑制大鼠海马CREB磷酸化和BDNF基因转录及蛋白表达。 Objective To study the effects of perinatal lanthanum exposure on cAMP response element binding pro- tein phosphorylation (p-CREB) and brain derived neurotrophic factor (BDNF) mRNA and protein expression in the hip- pocampus of offspring rats. Methods Sixty female Wistar rats were divided randomly into control, low-, medium-, and high-dose lanthanum-treated group. Rats in lanthanum-treated groups were administrated with 0. 25 % ,0. 5 % , and 1% lan- thanum chloride ( LaC13 ) in drinking water from day 0 of pregnancy to one month after weaning of the offspring,respec- tively. Then the p-CREB,BDNF mRNA and protein expression in the hippocampus were measured. Results Compared to the control group,hippocampal p-CREB protein expressions were 0. 77 ± 0. 063,0. 62 ± 0. 057 and 0. 52 ± 0. 051 ;the BDNF mRNA expressions were 0. 80 ± 0. 072,0. 56 ±0. 090,and 0.41 ±0. 075 and the BDNF protein expressions were 0. 67 ± 0. 065,0. 59 ± 0. 064,and 0. 51 ± 0. 045 for 0. 25% ,0. 5% ,and 1% lanthanum-treated offspring, respectively, with significant decreases ( P 〈 0. 05 ). Conclusion Perinatal lanthanum exposure could decrease CREB phosphorylation and BDNF gene transcription and protein expression in the hippocampus of rats.
出处 《中国公共卫生》 CAS CSCD 北大核心 2014年第2期204-206,共3页 Chinese Journal of Public Health
基金 国家自然科学基金(81072316) 辽宁省教育厅科研项目计划(2010702)
  • 相关文献

参考文献9

  • 1彭瑞玲,潘小川,解清,等.江西省婴幼儿稀土暴露与智能发育的相关性研究[J].中华预防医学杂志,2000,12 (增刊);55 -57.
  • 2杨敬华,刘秋芳,巫生文,张立丰,蔡原.氯化镧对大鼠海马即刻早期基因表达的影响[J].中华预防医学杂志,2011,45(4):340-343. 被引量:4
  • 3Takemori H,Kajimura J,Okamoto M. TORC-SIK cascade regu-lates CREB activity through the basic leucine zipper domain[ J].FEBS J,2007,274( 13) :3202 -3209.
  • 4刘佩,刘喆.脑源性神经营养因子在海马学习记忆中的作用[J].长春中医药大学学报,2009,25(2):195-197. 被引量:9
  • 5Mizuno M,Yamada K,Maekawa N,et al. CREB phosphorylation asa molecular marker of memory processing in the hippocampus forspatial learning[J].Benav Brain Res,2002,133(2) :135 -141.
  • 6Neves G, Cooke SF, Bliss TV. Synaptic plasticity, memory andthe hippocampus:a neural network approach to causality [ J]. NatRev Neurosci,2008,9:65 -75.
  • 7Taubenfeld SM, Wiig KA,Monti B,et al. Fornix-dependent in-duction of hippocampal CCAAT enhancer-binding protein [bata]and [ delta] co-localizes with phosphorylaled cAMP response ele-ment-binding protein and accompanies long-term memory consolidation[ J]. Neurosci,2001,21(1) :84 -91.
  • 8Abzoubi KH,Alkadhi KA. BDNF function in adult synaptic plas-ticity :the synaptic consolidation hypothesis[ J]. Prog Neurobio,2005,76(2) :99 -125.
  • 9Mizuno M, Yamada K,Olariu A,et al. Involvement of brain-de-rived neurotrophic factor in spatial memory formation and mainte-nance in a radial arm maze test in rats[ J]. Neurosci,2000,20 :2122 -2130.

二级参考文献12

  • 1杨敬华,蔡原,刘秋芳,张立丰,齐鸣,巫生文,鲁帅,程铭.镧对大鼠学习记忆及大脑皮质c-fos mRNA和c-Fos蛋白表达的影响[J].卫生研究,2009,38(3):348-351. 被引量:5
  • 2He X, Zhang Z, Zhang H, et al. Neurotoxicologieal evaluation of long-term lanthanum chloride exposure in rats. Toxicol Sci, 2008,103: 354-361.
  • 3Yang J, Liu Q, Zhang L, et al. Lanthanum chloride impairs memory,decreases pCaMK 1V ,pMAPK and pCREB expression ofhippocampus in rats. Toxicol Lett,2009,190: 208-214.
  • 4Zearfoss NR, Alarcon JM, Trifilieff P, et al. A molecular circuit composed of CPEB-1 and c-Jun controls growth hormone-mediatedsynaptic plasticity in the mouse hippocampus. J Neurosci, 2008, 28 : 8502-8509.
  • 5Renaudineau S, Poucet B, Laroche S, et al. Impaired long-term stability of CA1 place cell representation in mice lacking the transcription factor zif268/egrl. Proc Natl Acad Sci U S A,2009, 106 : 11771-11775.
  • 6Pintchovski SA, Peebles CL, Kim HJ, et al. The serum response factor and a putative novel transcription factor regulate expressionof the immediate-early gene Arc/Arg3. 1 in neurons. J Neurosci, 2009,29 : 1525-1537.
  • 7Cutsuridis V, Wennekers T. Hippocampus, microcircuits and associative memory. Neural Netw,2009,22 : 1120-1128.
  • 8Radulovic J, Tronson NC. Protein synthesis inhibitors, gene superinduction and memory: too little or too much protein? Neurobiol Learn Mem,2008,89 : 212-218.
  • 9Poirier R, Cheval H, Mailhes C, et al. Distinct functions of egr gene family members in cognitive processes. Front Neurosci, 2008,2 : 47-55.
  • 10Bramham CR, Worley PF, Moore MJ, et al. The immediate early gene arc/arg3.1 : regulation, mechanisms, and function. J Neurosci ,2008,28 : 11760-11767.

共引文献11

同被引文献21

引证文献4

二级引证文献14

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