School of Biomedical Sciences, University of Queensland, Brisbane, Queensland, Australia.
J Neuroendocrinol. 2013 Oct;25(10):910-9. doi: 10.1111/jne.12078.
The age-associated decline in growth hormone (GH) secretion may be a consequence of the reduction in the number of GH-releasing hormone (GHRH) positive neurones. However, it remains unclear whether an alteration in the number or distribution of somatostatin (SST) neurones contributes to this change. In the present study, we characterised the role of SST in modulating the change in pulsatile GH secretion in male C57Bl/6J mice throughout puberty and into early adulthood. We assessed pulsatile GH secretion in mice at 4, 8 and 16 weeks of age. These ages correspond to early pubertal, early adulthood and adulthood, respectively. We show an elevation in peak, total and pulsatile GH secretion coinciding with periods of rapid linear growth. Using in situ hybridisation and morphometric methods, we mapped the distribution of Sst mRNA expression within the mouse brain relative to this change in pulsatile GH secretion. The results obtained show that altered pulsatile GH secretion in male mice from 4-16 weeks of age does not coincide with a significant change in the number of Sst mRNA expressing neurones or an abundance of Sst mRNA expression throughout the arcuate nucleus (ARC) and periventricular nucleus (PeV). Rather, we observed a progressive decline in Sst mRNA expressing neurones within subnuclei of the paraventricular nucleus at this time. We conclude that structural changes in Sst expression within the PeV and ARC may not reflect the observed decline in pulsatile GH secretion in mice from puberty into early adulthood.
生长激素 (GH) 分泌随年龄的增长而下降,这可能是促生长激素释放激素 (GHRH) 阳性神经元数量减少的结果。然而,目前尚不清楚生长抑素 (SST) 神经元数量或分布的改变是否导致这种变化。在本研究中,我们研究了 SST 在调节雄性 C57Bl/6J 小鼠整个青春期和成年早期脉冲式 GH 分泌变化中的作用。我们评估了 4、8 和 16 周龄小鼠的脉冲式 GH 分泌情况。这些年龄分别对应于青春期早期、成年早期和成年期。我们发现,峰值、总 GH 分泌和脉冲式 GH 分泌均升高,与快速线性生长期相对应。通过原位杂交和形态计量学方法,我们绘制了 Sst mRNA 表达在小鼠大脑中的分布,以反映脉冲式 GH 分泌的变化。结果表明,4-16 周龄雄性小鼠的脉冲式 GH 分泌变化与 Sst mRNA 表达神经元数量或整个弓状核 (ARC) 和室旁核 (PeV) 中 Sst mRNA 表达的丰度无显著变化。相反,我们观察到此时室旁核亚核内 Sst mRNA 表达神经元数量逐渐减少。我们得出的结论是,PeV 和 ARC 中 Sst 表达的结构变化可能不能反映青春期到成年早期小鼠脉冲式 GH 分泌的下降。