Henry Wellcome Laboratories of Integrative Neuroscience and Endocrinology, School of Clinical Sciences, University of Bristol, BS1 3NY Bristol, United Kingdom.
Joint Clinical Research Unit, Bristol Royal Infirmary, University Hospitals Bristol NHS Foundation Trust, BS2 8HW Bristol, United Kingdom.
Proc Natl Acad Sci U S A. 2018 Apr 24;115(17):E4091-E4100. doi: 10.1073/pnas.1714239115. Epub 2018 Apr 9.
Glucocorticoids (GCs) are secreted in an ultradian, pulsatile pattern that emerges from delays in the feedforward-feedback interaction between the anterior pituitary and adrenal glands. Dynamic oscillations of GCs are critical for normal cognitive and metabolic function in the rat and have been shown to modulate the pattern of GC-sensitive gene expression, modify synaptic activity, and maintain stress responsiveness. In man, current cortisol replacement therapy does not reproduce physiological hormone pulses and is associated with psychopathological symptoms, especially apathy and attenuated motivation in engaging with daily activities. In this work, we tested the hypothesis that the pattern of GC dynamics in the brain is of crucial importance for regulating cognitive and behavioral processes. We provide evidence that exactly the same dose of cortisol administered in different patterns alters the neural processing underlying the response to emotional stimulation, the accuracy in recognition and attentional bias toward/away from emotional faces, the quality of sleep, and the working memory performance of healthy male volunteers. These data indicate that the pattern of the GC rhythm differentially impacts human cognition and behavior under physiological, nonstressful conditions and has major implications for the improvement of cortisol replacement therapy.
糖皮质激素(GCs)以超脉冲、脉冲式分泌,这种模式源于脑垂体前叶和肾上腺之间的前馈-反馈相互作用的延迟。GC 的动态振荡对于大鼠的正常认知和代谢功能至关重要,并且已经证明可以调节 GC 敏感基因表达的模式、修饰突触活动、并维持应激反应。在人类中,目前的皮质醇替代疗法不能复制生理激素脉冲,并且与精神病理学症状相关,特别是冷漠和对参与日常活动的动机减弱。在这项工作中,我们测试了这样一个假设,即大脑中 GC 动力学的模式对于调节认知和行为过程至关重要。我们提供的证据表明,以不同模式给予相同剂量的皮质醇会改变对情绪刺激的反应、对情绪面孔的识别准确性和注意力偏向/远离、睡眠质量以及健康男性志愿者的工作记忆表现的神经处理。这些数据表明,GC 节律的模式在生理、非应激条件下对人类认知和行为有不同的影响,对皮质醇替代疗法的改进有重大影响。