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首页> 外文期刊>Journal of neuroendocrinology >Recovery from disrupted ultradian glucocorticoid rhythmicity reveals a dissociation between hormonal and behavioural stress responsiveness.
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Recovery from disrupted ultradian glucocorticoid rhythmicity reveals a dissociation between hormonal and behavioural stress responsiveness.

机译:从破坏的超人性糖皮质激素节律性恢复中,揭示了激素和行为应激反应之间的分离。

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摘要

Ultradian release of glucocorticoids is thought to be essential for homeostasis and health. Furthermore, deviation from this pulsatile release pattern is considered to compromise resilience to stress-related disease, even after hormone levels have normalised. In the present study, we investigate how constant exposure to different concentrations of corticosterone affects diurnal and ultradian pulsatility. The rate of recovery in pulsatile hypothalamic-pituitary-adrenal (HPA) activity after withdrawal of exogenous corticosterone is also examined. Finally, the behavioural and neuroendocrine responsiveness to an audiogenic stressor is studied. Adrenally intact male rats were subcutaneously implanted with vehicle, 40% or 100% corticosterone pellets for 7 days. The continuous release of corticosterone from these implants abolished diurnal and ultradian corticosterone variation, as measured with high-frequency automated blood sampling. Pellet removal on post-surgery day 8 allowed rapid recovery of endogenous rhythms in animals previously exposed to daily average concentrations (40%) but not after exposure to high concentrations (100%) of corticosterone. Behavioural and neuroendocrine responsiveness to stress was distinctly different between the treatment groups. Audiogenic stimulation 1 day after pellet removal resulted in a similar corticosterone response in animals previously exposed to 40% corticosterone or vehicle. The 40% pellet group, however, showed less and shorter behavioural activity (i.e. locomotion, risk assessment) to noise stress compared to 100% corticosterone and vehicle-treated animals. In conclusion, unlike the animals impanted with 100% corticosterone, we find that basal HPA axis activity in the 40% group, which had mean daily levels of circulating corticosterone in the physiological range, rapidly reverts to the characteristic pulsatile pattern of corticosterone secretion. Upon reinstatement of the ultradian rhythm, and despite the fact that these animals did not differ from controls in their response to noise stress, they did show substantial changes in their behavioural response to stress.
机译:糖皮质激素的超剂量释放被认为对体内稳态和健康至关重要。此外,即使激素水平恢复正常,也认为偏离这种脉冲释放模式会损害对压力相关疾病的适应力。在本研究中,我们调查了持续暴露于不同浓度的皮质酮如何影响昼夜和超昼夜脉动。还检查了撤出外源性皮质酮后搏动性下丘脑-垂体-肾上腺(HPA)活性的恢复率。最后,研究了行为和神经内分泌对听觉应激源的反应。肾上腺完好无损的雄性大鼠皮下植入媒介物,40%或100%皮质酮丸剂7天。从这些植入物中持续释放皮质酮,可以消除高频和自动血液采样的昼夜变化和皮质激素变化。术后第8天去除颗粒,可以使先前暴露于每日平均浓度(40%)的动物快速恢复内源性节律,但暴露于高浓度(100%)的皮质酮后则无法恢复。行为和神经内分泌对压力的反应在治疗组之间明显不同。去除颗粒后1天的听觉刺激在先前暴露于40%皮质酮或媒介的动物中也产生类似的皮质酮反应。然而,与100%的皮质酮和媒介物治疗的动物相比,40%的颗粒物组对噪声压力表现出越来越少的行为活动(即运动,风险评估)。总之,与注入100%皮质酮的动物不同,我们发现40%组的基础HPA轴活性迅速恢复到皮质酮分泌的典型搏动模式,而后者在生理范围内的平均每日循环皮质酮水平。恢复Ultradian节律后,尽管这些动物在对噪音压力的反应方面与对照组没有不同,但它们的行为对压力的反应却发生了实质性变化。

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