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首页> 外文期刊>Okajimas folia anatomica japonica >Differential effects of neonatal maternal separation on the expression of neurotrophic factors in rat brain. II: Regional differences in the cerebellum versus the cerebral cortex
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Differential effects of neonatal maternal separation on the expression of neurotrophic factors in rat brain. II: Regional differences in the cerebellum versus the cerebral cortex

机译:新生儿母体分离对大鼠脑神经营养因子表达的差异作用。 II:小脑与大脑皮层的区域差异

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This study was conducted in order to examine the effects of early postnatal maternal separation stress on the age-dependent fluctuations in the expression levels of neurotrophic factor ligands and receptors in the developing cerebellum. Wistar rats were separated from their mothers for 3 h each day during postnatal days (PND) 10 to 15. The expression level of mRNA for brain-derived neurotrophic factor (BDNF), tyrosine kinase receptor B (TrkB), insulin-like growth factor-1 (IGF-1), and type-1 IGF receptor (IGF-1R) were evaluated in the cerebellum on PND16, 20, 30, and 60 with real-time RT-PCR. The mRNA levels of cerebellar BDNF in maternally separated rats were increased on PND16, while the other variables showed no significant alterations at any of the time points examined. However, the effects of an identical maternal separation on the cerebral cortex were previously reported to be completely different. These results indicate regional differences in the responses of neurotrophic factor ligands/receptors between the cerebellum and cerebral cortex. Given that neurotrophic factors play important roles in brain development, alterations in these factors may interrupt normal brain development and ultimately, lead to functional disruptions.
机译:进行这项研究是为了检查产后早期产妇分离压力对发育中小脑神经营养因子配体和受体表达水平的年龄依赖性波动的影响。 Wistar大鼠在产后10至15天中每天与母亲分开3小时。脑源性神经营养因子(BDNF),酪氨酸激酶受体B(TrkB),胰岛素样生长因子的mRNA表达水平使用实时RT-PCR在PND16、20、30和60的小脑中评估-1(IGF-1)和1型IGF受体(IGF-1R)。在PND16上,母本分离的大鼠小脑BDNF的mRNA水平增加,而其他变量在任何检查的时间点均无显着变化。但是,以前有报道说,相同的母体分离对大脑皮层的影响是完全不同的。这些结果表明小脑和大脑皮层之间的神经营养因子配体/受体反应的区域差异。考虑到神经营养因子在大脑发育中起重要作用,这些因子的改变可能会干扰正常的大脑发育,并最终导致功能破坏。

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