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Acupuncture Induces the Proliferation and Differentiation of Endogenous Neural Stem Cells in Rats with Traumatic Brain Injury

机译:针刺诱导颅脑外伤大鼠内源性神经干细胞的增殖和分化

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摘要

Purpose. To investigate whether acupuncture induced the proliferation and differentiation of endogenous neural stem cells (NSCs) in a rat model of traumatic brain injury (TBI). Methods. 104 Sprague-Dawley rats were randomly divided into normal, model, and acupuncture groups. Each group was subdivided into three-day (3 d), seven-day (7 d), and fourteen-day (14 d) groups. The rat TBI model was established using Feeney's freefall epidural impact method. The rats in the acupuncture group were treated at acupoints (Baihui, Shuigou, Fengfu, Yamen, and bilateral Hegu). The normal and model groups did not receive acupuncture. The establishment of the rat TBI model and the therapeutic effect of acupuncture were assessed using neurobehavioral scoring and hematoxylin-eosin staining. The proliferation and differentiation of NSCs in TBI rats were analyzed using immunofluorescence microscopy. Results. The levels of nestin-expressing cells and bromodeoxyuridine/glial fibrillary acidic protein- (BrdU/GFAP-) and BrdU/S100 calcium-binding protein B-positive and BrdU/microtubule-associated protein 2- and BrdU/galactocerebrosidase-positive cells were more significantly increased at various time points in the acupuncture group than in the model group (P < 0.01), except for a decreased level of BrdU/GFAP-positive cells at 7 d and 14 d. Conclusion. Acupuncture induced the proliferation and differentiation of NSCs, thereby promoting neural repair in the TBI rats.
机译:目的。目的探讨针刺是否在大鼠颅脑损伤(TBI)模型中诱导内源性神经干细胞(NSCs)的增殖和分化。方法。将104只Sprague-Dawley大鼠随机分为正常,模型和针刺组。每个组又分为三天(3 d),七天(7 d)和十四天(14 d)组。使用Feeney的自由落体硬膜外撞击法建立大鼠TBI模型。针刺组的大鼠经穴(百会,水沟,凤fu,崖门,双河合谷)治疗。正常和模型组未接受针灸。使用神经行为评分和苏木精-伊红染色评估大鼠TBI模型的建立和针刺的治疗效果。使用免疫荧光显微镜分析了TBI大鼠中NSC的增殖和分化。结果。表达巢蛋白的细胞和溴脱氧尿苷/神经胶质原纤维酸性蛋白(BrdU / GFAP-)和BrdU / S100钙结合蛋白B阳性和BrdU /微管相关蛋白2和BrdU /半乳糖脑苷脂酶阳性细胞的水平更高针刺组在各个时间点均显着高于模型组(P <0.01),但在7 d和14 d时BrdU / GFAP阳性细胞水平降低。结论。针刺诱导了NSC的增殖和分化,从而促进了TBI大鼠的神经修复。

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