Effect of electroacupuncture on the formation of glial scars in cerebral cortex of rats with focal cerebral ischemia/reperfusion

XU Hong-bei LUO Yong

Acta Anatomica Sinica ›› 2022, Vol. 53 ›› Issue (6) : 705-710.

PDF(4863 KB)
Welcome to visit Acta Anatomica Sinica! Today is Chinese
PDF(4863 KB)
Acta Anatomica Sinica ›› 2022, Vol. 53 ›› Issue (6) : 705-710. DOI: 10.16098/j.issn.0529-1356.2022.06.003

Effect of electroacupuncture on the formation of glial scars in cerebral cortex of rats with focal cerebral ischemia/reperfusion

  • XU  Hong-bei1, 2  LUO  Yong2*
Author information +
History +

Abstract

Objective To observe the effect of electroacupuncture on the formation of glial scars in the cerebral cortex of rats with focal cerebral ischemia/reperfusion(I/R).   Methods The focal cerebral ischemia/reperfusion model was established by thread method, and “Baihui” (GV 20) and left “Siguan” (Hegu LI 4/Taichong LR 3) were selected as acupoints points. Seventy-eight male SD rats were randomly divided into sham group (sham), focal cerebral ischemia/reperfusion (I/R), focal cerebral ischemia/reperfusion+ electroacupuncture group (I/R+EA). Seven days after reperfusion, modified neurological severity score (mNSS) was used to evaluate neurological deficit, HE staining was used to observe the degree of ischemic cerebral cortex. Immunofluorescencte was used to observe glial fibrillary acidic protein (GFAP)/neurocan, GFAP/phosphacan positive cells in the ischemic cerebral cortex. The average immunofluorescent intensity of GFAP, neurocan and phosphacan, and the levels of GFAP, neurocan and phosphacan mRNA in the ischemic cerebral cortex were analyzed by Real-time PCR, respectively.   Results Compared with the I/R group, mNSS score in I/R+EA group decreased significantly (P<0.01), and the degree of brain tissue damage reduced obviously. There were very few GFAP+/neurocan+ cells and GFAP+/phosphacan+ cells in the sham group. The astrocytes in I/R group were hypertrophy, increasing and thickened protrusions, more GFAP+/neurocan+ cells and GFAP+/phosphacan+ cells were dectected as well. While the count of GFAP+/neurocan+ cells and GFAP+/phosphacan+ cells in I/R+EA group were significantly lower than those in I/R group. In addition, the average immunofluorescence intensity of GFAP, neurocan and phosphacan in I/R+EA group, and mRNA content of above mentioned indicators were significantly lower than those in I/R group (P<0.05).   Conclusion Electroacupuncture promotes the recovery of neurological function in rats with focal cerebral I/R and reduce brain tissue damage, which may be related to the inhibition of glial scar formation in cerebral cortex. 

Key words

Focal cerebral ischemia/reperfusion / Glial scar / Electroacupuncture;Real-time PCR / Rat 

Cite this article

Download Citations
XU Hong-bei LUO Yong. Effect of electroacupuncture on the formation of glial scars in cerebral cortex of rats with focal cerebral ischemia/reperfusion[J]. Acta Anatomica Sinica. 2022, 53(6): 705-710 https://doi.org/10.16098/j.issn.0529-1356.2022.06.003

References

[1]Dokalis N, Prinz M. Resolution of neuroinflammation: mechanisms and potential therapeutic option [J]. Semin Immunopathol, 2019,41(6):699-709.
[2]Cregg JM, DePaul MA, Filous AR, et al. Functional regeneration beyond the glial scar [J]. Exp Neurol, 2014, 253:197-207.
[3]Zhang R, Wu Y, Xie F, et al. RGMa mediates reactive astrogliosis and glial scar formation through TGFbeta1/Smad2/3 signaling after stroke [J]. Cell Death Differ, 2018, 25(8):1503-1516.
[4]Bai D, Li D, Liu N, et al. Degradation of fibrinogen can reduce the formation of glial and fibrous scars after traumatic brain injury [J]. Acta Anatomica Sinica, 2014, 45(6):729-734.(in Chinese)
白丹, 李丹, 刘囡, 等. 降解纤维蛋白原可减少创伤性脑损伤后胶质瘢痕与纤维瘢痕的形成[J]. 解剖学报,2014, 45(6):729-734.
[5]Jiang J, Luo Y, Qin W, et al. Electroacupuncture suppresses the NF-kappa B signaling pathway by upregulating cylindromatosis to alleviate inflammatory injury in cerebral ischemia/reperfusion rats [J]. Front Mol Neurosci, 2017, 10:363.
[6]Zhan J, Qin W, Zhang Y, et al. Upregulation of neuronal zinc finger protein A20 expression is required for electroacupuncture to attenuate the cerebral inflammatory injury mediated by the nuclear factor-kB signaling pathway in cerebral ischemia/reperfusion rats [J]. J Neuroinflammation, 2016, 13(1):258.
[7]Zhou X, Lu W, Wang Y, et al. A20-Binding inhibitor of NF-kappaB1 ameliorates neuroinflammation and mediates antineuroinflammatory effect of electroacupuncture in cerebral ischemia/reperfusion rats [J]. Evid Based Complement Alternat Med, 2020, 2020:6980398.
[8]Longa EZ, Weinstein PR, Carlson S, et al. Reversible middle cerebral artery occlusion without craniectomy in rats [J]. Stroke, 1989, 20(1):84-91.
[9]Qin WY, Luo Y, Chen L, et al. Electroacupuncture could regulate the NF-kappa B signaling pathway to ameliorate the inflammatory injury in focal cerebral ischemia/reperfusion model rats [J]. Evid Based Complement Alternat Med, 2013, 2013:924541.
[10]Chen J, Li Y, Wang L, et al. Therapeutic benefit of intravenous administration of bone marrow stromal cells after cerebral ischemia in rats [J]. Stroke,2001, 32(4):1005-1011.
[11]Wei JJ, Li XF, Li LL, et al. Effects of edaravone on vascular endothelial growth factor and angiopoietin-1 in rats with cerebral ischemia-reperfusion [J]. Journal of Clinical Neurology, 2016,29(6):443-446. (in Chinese)
韦俊杰, 李晓峰, 李吕力, 等. 依达拉奉对脑缺血再灌注大鼠血管内皮生长因子和血管生成素-1的影响[J]. 临床神经病学杂志, 2016,29(6):443-446.
[12]Pekny M, Pekna M. Astrocyte reactivity and reactive astrogliosis: costs and benefits [J]. Physiol Rev, 2014,94(4):1077-1098.
[13]Sofroniew MV. Molecular dissection of reactive astrogliosis and glial scar formation [J]. Trends Neurosci, 2009, 32(12):638-647.
[14]Bian W, Qin WY. Electroacupuncture reduces brain edema injury and astrocyte activation in rats with focal cerebral ischemia/reperfusion by inhibiting the expression of AQP4 [J]. Modern Medicine and Health, 2018, 34(5):665-668. (in Chinese)
卞炜, 秦文熠. 电针通过抑制AQP4表达减轻局灶脑缺血/再灌注大鼠脑水肿损伤及星形胶质细胞激活[J]. 现代医药卫生,2018,34(5):665-668.
[15]Yang ZhX, Yu HB, Luo WSh, et al. The effect of acupuncture at the Ren and Du channels on hippocampal astrocytes in rats with cerebral ischemia[J]. China Medical Herald. 2008, 2008(31): 7-9. (in Chinese)
杨卓欣, 于海波, 罗文舒, 等. 针刺任脉和督脉对脑缺血大鼠海马星形胶质细胞的影响[J]. 中国医药导报, 2008, 2008(31):7-9.
[16]Ye XX. Comparison of differences in the effects of electroacupuncture and hand on astrocytes in rats with cerebral infarction [D]. Nanning: Guangxi Medical University, 2014. (in Chinese)
叶晓雪. 电针及手针对脑梗死大鼠星形胶质细胞影响的差异性比较 [D]. 南宁:广西医科大学,2014.
[17]Zhao H, Lu Y, Wang Y, et al. Electroacupunture contributes to recovery of neurological deficits in experimental stroke by activating astrocytes [J]. Restor Neurol Neurosci, 2018, 36(3):301-312.
[18]Xiao YC. Effects of different electroacupuncture frequencies on brain astrocytes in rats with focal cerebral ischemia [D]. Nanning: Guangxi Medical University, 2011. (in Chinese)
肖贻财. 不同电针频率对局灶性脑缺血大鼠脑星形胶质细胞的影响 [D]. 南宁:广西医科大学,2011.
[19]Sibson NR, Lowe JP, Blamire AM, et al. Acute astrocyte activation in brain detected by MRI: new insights into T(1) hypointensity [J]. J Cereb Blood Flow Metab,2008,28(3):621-632.
[20]Abeysinghe HC, Phillips EL, Chin-Cheng H, et al. Modulating astrocyte transition after stroke to promote brain rescue and functional recovery: emerging targets include Rho kinase [J]. Int J Mol Sci,2016,17(3):288.
[21]Du Y, Li X, Ran L, et al. Role of astrocytes in ischemic cerebrovascular disease [J]. Journal of Apoplexy and Nervous Diseases, 2018, 35(9): 841-844. (in Chinese)
杜瑶, 李欣, 冉利, 等. 星形胶质细胞在缺血性脑血管疾病中的双重作用[J]. 中风与神经疾病杂志,2018, 35(9):841-844.
PDF(4863 KB)

Accesses

Citation

Detail

Sections
Recommended

/