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No effect of sustained systemic growth retardation on the distribution of Reelin-expressing interneurons in the neuron-producing hippocampal dentate gyrus in rats.

机译:持续的系统性生长迟缓对大鼠产生神经元的海马齿状回中表达Reelin的中间神经元的分布没有影响。

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摘要

Reelin signaling plays a role in neuronal migration and positioning during brain development. To clarify the effect of systemic growth retardation on the distribution of Reelin-expressing interneurons in the hilus of the hippocampal dentate gyrus, pregnant rats were fed a synthetic diet with either a normal (20% casein) or low (10% casein) protein concentration from gestational day 10 to postnatal day (PND) 21 at weaning. Male offspring were immunohistochemically examined at PND 21 and on PND 77. Protein-restricted offspring displayed systemic growth retardation through PND 77 and had decreased absolute brain weights and an increased number of external granular cells in the cerebellar cortex, suggestive of retarded brain growth at weaning. However, maternal protein restriction did not change the cellular distribution of immunoreactivity for Reelin, Calbindin-D-28K, or glutamic acid decarboxylase 67 or of NeuN-positive postmitotic neurons in the dentate hilus either at PND 21 or PND 77, which suggests that the population of gamma-aminobutyric acid-ergic interneurons involving synthesis of Reelin was not affected. Furthermore, as well as the distribution of hilar neurons expressing neurogenesis-related FoxG1, cell proliferation and apoptosis in the subgranular zone were unaffected through PND 77. These results suggest that systemic growth retardation caused by maternal protein restriction does not affect neuronal migration and postnatal neurogenesis of the dentate gyrus resulting in unaltered distribution of Reelin-synthesizing interneurons.
机译:Reelin信号传导在大脑发育过程中在神经元迁移和定位中起作用。为了阐明全身性生长迟缓对海马齿状回的希里斯中表达Reelin的中间神经元分布的影响,给妊娠大鼠饲喂蛋白质含量正常(20%酪蛋白)或蛋白质含量低(10%酪蛋白)的合成饮食。从断奶的第10天到产后第21天。在PND 21和PND 77上对雄性后代进行了免疫组织化学检查。受蛋白质限制的后代通过PND 77表现出全身性生长迟缓,绝对脑重量减少,小脑皮质中外部颗粒细胞数量增加,提示断奶时大脑生长受阻。 。然而,母体蛋白质限制并没有改变PND 21或PND 77对齿状hilus中Reelin,Calbindin-D-28K或谷氨酸脱羧酶67或NeuN阳性有丝分裂后神经元的免疫反应性的细胞分布。涉及Reelin合成的γ-氨基丁酸能中神经元的数量不受影响。此外,以及表达神经发生相关FoxG1的肺门神经元的分布,颗粒下区域的细胞增殖和凋亡不受PND 77的影响。这些结果表明,母体蛋白质限制引起的系统性生长迟缓不影响神经元迁移和产后神经发生。齿状回的变化导致Reelin合成中间神经元的分布不变。

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