首页> 外文期刊>Acta Histochemica: Zeitschrift fur Histologische Topochemie >Neocortical pCREB and BDNF expression under different modes of hypobaric hypoxia: Role in brain hypoxic tolerance in rats
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Neocortical pCREB and BDNF expression under different modes of hypobaric hypoxia: Role in brain hypoxic tolerance in rats

机译:低压缺氧不同模式下新皮质pCREB和BDNF的表达:在大鼠脑缺氧耐受性中的作用

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Preconditioning with repetitive mild hypobaric hypoxia is known to increase tolerance of susceptible brain neurons to severe hypoxia, whereas a single trial of mild hypoxia has been ineffective. In the present study, the effects of three-trial and one-trial hypobaric preconditioning on the expression of the protective transcription factor phosphorylated CREB (pCREB) and neurotrophin BDNF, before and after severe hypobaric hypoxia, have been comparatively studied in the neocortex of rats. As revealed by quantitative immunocytochemistry, the severe hypobaric hypoxia (180. Torr, 3. h) substantially down-regulated the levels of pCREB and BDNF in cortical neurons assessed 24. h after the treatment. One trial of mild hypoxia (360. Torr, 2. h) also reduced by half the number of BDNF-expressing cells, but had no effect on pCREB expression in the neocortex. In contrast, the exposure to three trials of mild hypoxia at 24. h intervals considerably up-regulated pCREB and BDNF levels in the neocortex of rats. Only preconditioning by three trials of mild hypoxia (360. Torr, 2. h, 24. h intervals), but not a single trial preconditioning, was neuroprotective significantly enhancing the pCREB and BDNF neuronal expression in response to severe hypoxic challenge. The results of the present study indicate that development of the neuronal hypoxic tolerance induced by the three-trial mild hypoxic preconditioning is apparently associated with activation of CREB and BDNF expression.
机译:已知反复轻度低压缺氧预处理会增加易感性脑神经元对严重缺氧的耐受性,而轻度缺氧的单项试验无效。在本研究中,已经在大鼠新皮层中比较了三重和一重低压预适应对严重低压缺氧前后保护性转录因子磷酸化CREB(pCREB)和神经营养蛋白BDNF表达的影响。 。如定量免疫细胞化学所揭示的,严重的低压缺氧(180. Torr,3.h)大大下调了治疗后24.h评估的皮层神经元中pCREB和BDNF的水平。一项轻度缺氧的试验(360. Torr,2。h)也使表达BDNF的细胞数量减少了一半,但对新皮层中pCREB的表达没有影响。相反,暴露于三项在24 h间隔内进行的轻度缺氧试验中,大鼠新皮层中的pCREB和BDNF水平明显上调。只有通过三项轻度缺氧试验(360. Torr,2。h,24。h间隔)进行的预处理,而不是一项单独的预处理,才能对严重的低氧攻击产生明显的神经保护作用,从而增强pCREB和BDNF的神经元表达。本研究的结果表明,由三试轻度低氧预处理引起的神经元低氧耐受性的发展显然与CREB和BDNF表达的激活有关。

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