首页> 外文期刊>Psychoneuroendocrinology: An International Journal >Sex differences and the modulating effects of gonadal hormones on basal and the stressor-decreased newly proliferative cells and neuroblasts in dentate gyrus.
【24h】

Sex differences and the modulating effects of gonadal hormones on basal and the stressor-decreased newly proliferative cells and neuroblasts in dentate gyrus.

机译:性别差异和性腺激素对齿状回的基底和应激减少的新增生细胞和神经母细胞的调节作用。

获取原文
获取原文并翻译 | 示例
           

摘要

This study was undertaken to assess sex differences and the modulating effects of gonad intactness and the estrous phase on basal and the stressor-decreased cell proliferation and early differentiation in Balb/C mouse dentate gyrus (DG). Besides, we compared the stress-reversing effects exerted by the presence of male and female Balb/C mouse odors in stressed male and female mouse DG in this regard. Female mice had lower baselines in the number of newly proliferated cells and neuroblasts than male mice. Although the stressor induced decreases in the number of newly proliferative cells and neuroblasts in both male and female DG, an obvious decrease in neuronal lineage commitment was observed in female DG. Moreover, ovariectomy induced decreases in baselines in the number of proliferative cells and neuroblasts but did not affect the stressor-induced decrease in neuronal lineage commitment in female DG. Interestingly, pro-estrous mice exhibited the stressor-decreased neuronal lineage commitment, while estrous and diestrous mice did not display such a decrease. Furthermore, orchidectomy did not affect basal or the stressor-decreased newly proliferative cells or neuroblasts in male DG. Finally, male odors were less effective than female odors in abolishing the stressor-decreased neuronal lineage commitment in female mice, while male and female odors were comparable in reversing the stressor-decreased newly proliferated cells and neuroblasts in male mice. The protective effects of mouse odors' company in the stressed male mouse DG were associated with local BDNF and NGF replenishment. Taken together, sexual differences in baselines in the number of newly proliferative cells, neuroblasts, and the sensitivity to stress-altered neuronal lineage commitment in the DG could be, in part, due to gonadal hormone differences between the two sexes. Mouse odors may reverse stressor-decreased newly proliferative cells and neuroblasts in male, but not in female, mouse DG by restoring BDNF and NGF levels.
机译:进行这项研究以评估Balb / C小鼠齿状回(DG)的性别差异以及性腺完整和发情期对基础和应激减少的细胞增殖和早期分化的调节作用。此外,我们在这方面比较了雄性和雌性Balb / C小鼠气味的存在对应激的雄性和雌性小鼠DG产生的逆转压力作用。雌性小鼠的新增殖细胞和成神经细胞的数量低于雄性小鼠。尽管应激在雄性和雌性DG中诱导了新增殖细胞和成神经细胞数量的减少,但在雌性DG中却观察到神经元谱系承诺的明显减少。此外,卵巢切除术诱导的增殖细胞和成神经细胞数目的基线降低,但不影响雌性DG应激源诱导的神经元谱系定植的降低。有趣的是,发情前小鼠表现出应激源减少的神经元谱系承诺,而发情和发情小鼠则没有这种减少。此外,兰花切除术不影响男性DG的基底细胞或应激源减少的新增生细胞或成神经细胞。最后,在消除雌性小鼠中应激源减少的神经元谱系定型方面,雄性气味不如雌性气味有效,而在逆转雄性小鼠中应激源减少的新增殖细胞和成神经细胞方面,雄性和雌性气味可比。小鼠气味公司对应激的雄性小鼠DG的保护作用与局部BDNF和NGF的补充有关。两者合计,DG中新增生细胞,成神经细胞的数量和基线对性别的改变对基线的性别差异可能部分是由于两性之间的性腺激素差异。老鼠的气味可以通过恢复BDNF和NGF的水平来逆转雄性老鼠DG中应激源减少的新增生细胞和成神经细胞,而雌性老鼠DG中则不然。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号