首页> 美国卫生研究院文献>The Journal of Veterinary Medical Science >Electroacupuncture at the Zusanli and Baihui acupoints ameliorates type-2 diabetes-induced reductions in proliferating cells and differentiated neuroblasts in the hippocampal dentate gyrus with increasing brain-derived neurotrophic factor levels
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Electroacupuncture at the Zusanli and Baihui acupoints ameliorates type-2 diabetes-induced reductions in proliferating cells and differentiated neuroblasts in the hippocampal dentate gyrus with increasing brain-derived neurotrophic factor levels

机译:电针足三里和百会穴改善了2型糖尿病引起的海马齿状回中增殖细胞和分化成神经母细胞减少以及脑源性神经营养因子水平的提高

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摘要

In the current study, we investigated whether electroacupuncture (EA) can inhibit pathological reductions in neurogenesis. Zucker diabetic fatty (ZDF) rats at 7 weeks of age were anesthetized with zoletil, and sham-acupuncture or EA at the Zusanli (ST36) and Baihui (GV20) acupoints was administered once a day for 5 weeks. In the ZDF group that received sham-EA (ZDF-Sham group), the blood glucose level was significantly increased together with age as compared to the control littermates [Zucker lean control (ZLC) rat]. In contrast, proliferating cells and differentiated neuroblasts were significantly decreased in the ZDF-Sham group compared to the ZLC group. Although EA treatment decreased blood glucose levels, this was not statistically significant when compared to blood glucose levels changes in the ZDF-Sham group. However, proliferating cells and differentiated neuroblasts were significantly increased with EA in ZDF rats as compared to those in the ZDF-Sham group. Brain-derived neurotrophic factor (BDNF) levels were significantly decreased in hippocampal homogenates of ZDF-Sham group compared to those in the ZLC group. The EA treatment significantly increased the BDNF levels compared to those in the ZDF-Sham group, and BDNF levels in this group were similar to those in the ZLC group. These results suggest that EA at ST36 and GV20 can ameliorate the reductions in proliferating cells and differentiated neuroblasts in the dentate gyrus induced by type-2 diabetes without significantly reducing blood glucose levels with increasing BDNF levels.
机译:在当前的研究中,我们调查了电针(EA)是否可以抑制神经发生的病理减少。用zoletil麻醉7周龄的Zucker糖尿病高脂(ZDF)大鼠,并在足三里(ST36)和百会(GV20)穴位每天一次进行假针刺或EA,连续5周。与对照组同窝仔猪[Zucker lean control(ZLC)rat]相比,接受假手术EA的ZDF组(ZDF-Sham组)的血糖水平随年龄显着增加。相反,与ZLC组相比,ZDF-Sham组的增殖细胞和分化的神经母细胞明显减少。尽管EA治疗降低了血糖水平,但与ZDF-Sham组的血糖水平变化相比,这在统计学上并不显着。然而,与ZDF-Sham组相比,EA在ZDF大鼠中的增殖细胞和分化的神经母细胞显着增加。与ZLC组相比,ZDF-Sham组海马匀浆的脑源性神经营养因子(BDNF)水平显着降低。与ZDF-Sham组相比,EA治疗显着增加了BDNF水平,该组的BDNF水平与ZLC组相似。这些结果表明,在ST36和GV20处的EA可以减轻由2型糖尿病引起的齿状回中增殖细胞和分化的成神经细胞的减少,而不会随着BDNF水平的升高而显着降低血糖水平。

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