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首页> 外文期刊>Progress in Neuro-Psychopharmacology & Biological Psychiatry: An International Research, Review and News Journal >Notch1 signaling, hippocampal neurogenesis and behavioral responses to chronic unpredicted mild stress in adult ischemic rats.
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Notch1 signaling, hippocampal neurogenesis and behavioral responses to chronic unpredicted mild stress in adult ischemic rats.

机译:在成年缺血大鼠中,Notch1信号,海马神经发生和对慢性意外轻度应激的行为反应。

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Accumulating evidence indicates that the Notch signaling pathway fulfills important roles in ischemia-stimulated neurogenesis, which may be regarded as an etiological factor in post-stroke depression. Here we explored Notch(1) signaling, hippocampal neurogenesis and behavioral responses to chronic unpredicted mild stress (CUMS) in adult ischemic rats. Animals were treated with permanent middle cerebral artery occlusion followed by an 18 day CUMS procedure. Proliferating cells in the hippocampus and their cell fate were investigated on days 19 and 28 after ischemic surgery. Additionally, expression of the Notch(1) intracellular domain (NICD) and its downstream targets Hes1 and Hes5 was examined. A sucrose preference test and forced swim test were used to assess behavioral responses. CUMS produced depressive-like behaviors and decreased the number of proliferating cells on day 19 (both p<0.001), accompanied by a decreased expression of both Hes1 and Hes5 in the hippocampus of ischemic animals (p<0.001). On day 28, CUMS resulted in a decreased number of neurogenically-differentiating cells in the subgranular zone (p<0.001) while permitting differentiation into astrocytes in the hilus (p<0.05). Hes1 and Hes5 protein expression levels were increased. The expression of the NICD was significantly decreased at both time-points. CUMS led to expression changes in the Notch(1) signaling cascade in ischemic rats, most of which concerned hippocampal neurogenesis. This suggests that variation in Notch(1) activity and subsequent expression of its downstream targets, including Hes1 and Hes5, may, at least in part, contribute to modulation of ischemia-related hippocampal neurogenesis by CUMS.
机译:越来越多的证据表明,Notch信号通路在缺血刺激的神经发生中起重要作用,这可能被认为是中风后抑郁的病因。在这里,我们探讨了Notch(1)信号,海马神经发生和成年缺血大鼠对慢性不可预测轻度应激(CUMS)的行为反应。用永久性大脑中动脉闭塞治疗动物,然后进行18天CUMS程序。在缺血手术后的第19和28天研究海马中的增殖细胞及其细胞命运。此外,检查了Notch(1)细胞内域(NICD)及其下游靶标Hes1和Hes5的表达。使用蔗糖偏爱测试和强迫游泳测试来评估行为反应。 CUMS在第19天产生了抑郁样行为,并减少了增殖细胞的数量(均p <0.001),同时缺血动物海马中Hes1和Hes5的表达均降低(p <0.001)。在第28天,CUMS导致了在颗粒下区域的神经原性分化细胞数量减少(p <0.001),同时允许在的分化为星形胶质细胞(p <0.05)。 Hes1和Hes5蛋白表达水平增加。在两个时间点,NICD的表达均显着降低。 CUMS导致缺血大鼠的Notch(1)信号级联反应中的表达变化,其中大部分与海马神经发生有关。这表明Notch(1)活性的变化及其下游靶标(包括Hes1和Hes5)的后续表达可能至少部分有助于CUMS对缺血相关海马神经发生的调节。

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