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Effects of Environmental Enrichment on Doublecortin and BDNF Expression along the Dorso-Ventral Axis of the Dentate Gyrus

机译:丰富的环境对沿齿状回的背腹轴双皮质素和BDNF表达的影响。

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Adult hippocampal neurogenesis (AHN) in the dentate gyrus is known to respond to environmental enrichment, chronic stress, and many other factors. The function of AHN may vary across the septo-temporal axis of the hippocampus, as different subdivisions are responsible for different functions. The dorsal pole regulates cognitive-related behaviors, while the ventral pole mediates mood-related responses through the hypothalamic–pituitary–adrenal (HPA) axis. In this study, we investigate different methods of quantifying the effect of environmental enrichment on adult hippocampal neurogenesis in the dorsal and ventral parts of the dentate gyrus (dDG and vDG). To this purpose, 11-week-old female CD-1 mice were assigned for 8 days to one of two conditions: the environmental Enrichment (E) group received i) running wheels, ii) larger cages, iii) plastic tunnels, and iv) bedding with male urine, while the Control (C) group received standard housing. Dorsal CA (Cornu Ammonis) and DG regions were larger in the E than the C animals. Distance run linearly predicted the volume of the dorsal hippocampus, as well as of the intermediate and ventral CA regions. In the dDG, the amount of Doublecortin (DCX) immunoreactivity was significantly higher in E than in C mice. Surprisingly, this pattern was the opposite in the vDG (C > E). Real-time PCR measurement of Dcx mRNA and DCX protein analysis using ELISA showed the same pattern. Brain derived neurotrophic factor (BDNF) immunoreactivity and mRNA displayed no difference between E and C, suggesting that upregulation of DCX was not caused by changes in BDNF levels. BDNF levels were higher in vDG than in dDG, as measured by both methods. Bdnf expression in vDG correlated positively with the distance run by individual E mice. The similarity in the patterns of immunoreactivity, mRNA and protein for differential DCX expression and for BDNF distribution suggests that the latter two methods might be effective tools for more rapid quantification of adult hippocampal neurogenesis.
机译:已知齿状回中的成人海马神经发生(AHN)对环境富集,慢性应激和许多其他因素有反应。 AHN的功能可能会沿海马的颞颞轴变化,因为不同的细分负责不同的功能。背极调节与认知有关的行为,而腹极通过下丘脑-垂体-肾上腺(HPA)轴介导与情绪有关的反应。在这项研究中,我们研究了量化环境富集对齿状回(dDG和vDG)的背侧和腹侧海马神经发生的影响的不同方法。为此,将11周大的CD-1雌性小鼠分配给以下两种情况之一,为期8天:环境致富(E)组接受i)跑轮,ii)较大的笼子,iii)塑料隧道和iv )用男性尿液铺垫,而对照组(C)则接受标准住房。 E区的背CA区(Cornu Ammonis)和DG区大于C区。距离运行线性预测背海马以及中部和腹侧CA区的体积。在dDG中,E中Doublecortin(DCX)免疫反应性的量显着高于C小鼠。令人惊讶的是,这种模式在vDG中是相反的(C> E)。 Dcx mRNA的实时PCR测量和使用ELISA的DCX蛋白分析显示了相同的模式。脑源性神经营养因子(BDNF)的免疫反应性和mRNA在E和C之间没有差异,这表明DCX的上调不是由BDNF水平的改变引起的。通过这两种方法测量,vDG中的BDNF水平高于dDG。 vDG中的Bdnf表达与单个E小鼠的奔跑距离呈正相关。差异DCX表达和BDNF分布的免疫反应性,mRNA和蛋白质的模式相似,表明后两种方法可能是更有效地定量成人海马神经发生的有效工具。

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