AbstractObjective To investigate the effect and mechanism of electroacupuncture at acupoints on radiation-induced hippocampal neuronal apoptosis in C57 mice. Methods Forty one-month-old C57/6J mice were equally and randomly divided into control group, model group (8 Gy), acupoint-electroacupuncture group, and non-acupoint-electroacupuncture group. In the acupoint-electroacupuncture group, mice received electroacupuncture intervention at Baihui, Fengfu, and Shenshu points. The novel object recognition test was used to evaluate the cognitive, learning, and memory abilities in mice. Immunohistochemistry was used to determine the levels of caspase-3 and apoptosis-inducing factor (AIF). TUNEL assay was used to detect DNA breaks. The data were analyzed by one-way analysis of variance and the Tukey's multiple comparison. Results Compared with the control group, the model group had a significantly reduced recognition index (P=0.040);compared with the model group, the acupoint-electroacupuncture group had a significantly increased recognition index (P=0.043), shown by significantly longer time spent exploring novel objects (P=0.035). According to the results of immunohistochemistry, the model group had significantly higher apoptosis rate and levels of caspase-3 and AIF in hippocampal neurons than the control group (P=0.002, 0.003, 0.023), while the acupoint-electroacupuncture group had significantly lower apoptosis rate and levels of caspase-3 and AIF in hippocampal neurons than the model group (P=0.027, 0.005, 0.004). Conclusions Radiation can induce hippocampal neuronal apoptosis and damage cognitive function in mice. Electroacupuncture intervention can, to some degree, reduce above damages.
Fund:National Natural Science Foundation of China (81373852);Key Scientific Research Project of Colleges and Universities in Henan Province (15A310019);PhD Fund Project of Henan University of Traditional Chinese Medicine (BSJJ-201510)
Gao Jianfeng,Zheng Wanjun,Lyu Minghui et al. Effect and mechanism of electroacupuncture intervention on radiation-induced hippocampal neuronal apoptosis in mice[J]. Chinese Journal of Radiation Oncology, 2017, 26(12): 1443-1448.
Gao Jianfeng,Zheng Wanjun,Lyu Minghui et al. Effect and mechanism of electroacupuncture intervention on radiation-induced hippocampal neuronal apoptosis in mice[J]. Chinese Journal of Radiation Oncology, 2017, 26(12): 1443-1448.
[1] 武鑫,郑婉君,李琳,等.不同疗程电针对X线照射小鼠行为学影响实验研究[J].中华放射肿瘤学杂志,2016,25(6):634-638.DOI:10.3760/cma.j.issn.1004-4221.2016.06.020. Wu X,Zheng WJ,Li L,et al. Experimental study on different courses of electro-acupuncture treatment on behavior of model mice with radiographic exposure[J].Chin J Radiat Oncol,2016,25(6):634-638.DOI:10.3760/cma.j.issn.1004-4221.2016.06.020. [2] 武鑫,郑婉君,李琳,等.电针穴位对受辐照小鼠认知功能和学习记忆的影响[J].中华放射医学与防护杂志,2016,36(2):94-99.DOI:10.3760/cma.j.issn.0254-5098.2016.02.003 Wu X,Zheng WJ,Li L,et al. Effects of electroacupuncture on cognitive function and learning and memory of mice exposed to ionizing radiation[J].Chin J Radiol Med Protect,2016,36(2):94-99.DOI:10.3760/cma.j.issn.0254-5098.2016.02.003 [3] 范兴文,贯十阔,吴开良.脑部照射对大鼠情绪和记忆的影响[J].中国癌症杂志,2014,24(11):814-819.DOI:10.3969/j.issn.1007-3969.2014.11.003. Fan XW,Guan SK,Wu KL,et al. The effect of brain irradiation on mood and memory for rats[J].China Oncol,2014,24(11):814-819.DOI:10.3969/j.issn.1007-3969.2014.11.003. [4] 高玲,刘青杰.辐射对脑海马神经元的影响及其作用机制研究[J].中国医学装备,2013,10(11):1-3.DOI:10.3969/J.ISSN.1672-8270.2013.11.001. Gao L,Liu QJ.Research on effects of radiation on hippocampus neuron and the related molecular mechanism[J].China Med Equip,2013,10(11):1-3.DOI:10.3969/J.ISSN.1672-8270.2013.11.001. [5] 刘家斌,李广生,邓江华,等.依达拉奉对急性放射性损伤兔脑组织核转录因子-κB表达及丙二醛含量的影响[J].临床神经病学杂志,2013,26(5):358-361. Liu JB,Li GS,Deng JH,et al. Effect of Edaravone on expression of nuclear transcription factor-κB and content of malondialdehyde in brain tissue of rabbits with acute radioactivity brain injury[J].J Clin Neurol,2013,26(5):358-361. [6] 余曙光,郭义.实验针灸学[M].上海:上海科学技术出版社,2009:149-150. Yu SG,Guo Y.Experimental acupuncture[M].Shanghai:Shanghai science and technology press,2009:149-150. [7] McLachlan RS.A brief review of the anatomy and physiology of the limbic system[J].Can J Neurol Sci,2009,36 Suppl 2:S84-S87. [8] Archana M,Bastian YTL,Kumaraswamy KL.Various methods available for detection of apoptotic cells-a review[J].Indian J Cancer,2013,50(3):274-283.DOI:10.4103/0019-509X.118720. [9] Loo DT.In situ detection of apoptosis by the TUNEL assay:an overview of techniques[A]//Didenko VV.DNA Damage DetectionIn Situ,Ex Vivo,and In Vivo[M].New York:Humana Press,2011,682:3-13. [10] Muppidid J,Porter M,Siegel RM.Measurement of apoptosis and other forms of cell death[J].Curr Protoc Immunol,2004.DOI:10.1002/0471142735.im0317 s59. [11] Snigdha S,Smith ED,Prieto GA,et al. Caspase-3 activation as a bifurcation point between plasticity and cell death[J].Neurosci Bull,2012,28(1):14-24.DOI:10.1007/s12264-012-1057-5. [12] Ghavami S,Shojaei S,Yeganeh B et al. Autophagy and apoptosis dysfunction in neurodegenerative disorders[J].Prog Neurobil,2014,112:24-49.DOI:10.1016/j.pneurobio.2013.10.004. [13] Cande C,Ceeoni F,Dessen P,et al. Apoptosis-inducing factor (AIF):key to the conserved caspase-independent pathways of cell death?[J]. J Cell Sci,2002,115(24):4727-4734.DOI:10.1242/jcs.00210.