Keenan Daniel M, Veldhuis Johannes D
Department of Statistics, University of Virginia, Charlottesville, Virginia, USA.
Am J Physiol Regul Integr Comp Physiol. 2009 Nov;297(5):R1215-27. doi: 10.1152/ajpregu.90800.2008. Epub 2009 Jul 8.
The mechanisms by which aging progressively depletes testosterone (Te) availability in the male are unknown. Accordingly, the objective was to estimate brain gonadotropin-releasing hormone (GnRH) outflow (release and action), which cannot be observed directly, on the basis of downstream effects on pituitary luteinizing hormone (LH) secretion. LH, in turn, feeds forward on (stimulates) gonadal Te secretion, which then feeds back on (inhibits) GnRH-driven LH secretion. LH and Te concentrations were measured repetitively (every 10 min) over 18 h during graded pharmacological blockade of endogenous GnRH outflow in 24 healthy 20- to 72-yr-old men. Data were analyzed using a new age-dependent regression model of GnRH-LH-Te interactions to estimate pulsatile LH secretion and elimination, GnRH outflow, LH feedforward, and Te feedback. By incorporating regression on age within the dose-response model, we show that aging erodes all three primary forward and reverse pathways linking the brain, pituitary gland, and testes. Aging is associated with concomitant deficits in GnRH --> LH feedforward, LH --> Te feedforward, and Te --> GnRH/LH feedback. The analytical formalism should be generalizable to other ensemble regulatory systems, such as those that control growth, reproduction, stress adaptations, and glucose metabolism.
衰老逐渐降低男性体内睾酮(Te)可用性的机制尚不清楚。因此,本研究的目的是根据对垂体促黄体生成素(LH)分泌的下游影响,来估计无法直接观察到的脑促性腺激素释放激素(GnRH)流出(释放和作用)情况。反过来,LH会正向作用于(刺激)性腺Te分泌,而Te又会反向作用于(抑制)GnRH驱动的LH分泌。在对24名年龄在20至72岁的健康男性进行内源性GnRH流出的分级药理学阻断期间,在18小时内重复测量(每10分钟一次)LH和Te浓度。使用一种新的GnRH-LH-Te相互作用的年龄依赖性回归模型分析数据,以估计LH的脉冲式分泌和消除、GnRH流出、LH正向作用和Te反向作用。通过在剂量反应模型中纳入年龄回归分析,我们发现衰老会破坏连接脑、垂体和睾丸的所有三条主要正向和反向途径。衰老与GnRH→LH正向作用、LH→Te正向作用以及Te→GnRH/LH反向作用的同时缺陷有关。这种分析形式应可推广到其他整体调节系统,如控制生长、生殖、应激适应和葡萄糖代谢的系统。