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The role of the hypothalamic-pituitary-adrenal axis in modulating seasonal changes in immunity

机译:下丘脑-垂体-肾上腺轴在调节免疫力季节性变化中的作用

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摘要

Seasonal changes in environmental conditions are accompanied by significant adjustment of multiple biological processes. In temperate regions, the day fraction, or photoperiod, is a robust environmental cue that synchronizes seasonal variations in neuroendocrine and metabolic function. In this work, we propose a semimechanistic mathematical model that considers the influence of seasonal photoperiod changes as well as cellular and molecular adaptations to investigate the seasonality of immune function. Our model predicts that the circadian rhythms of cortisol, our proinflammatory mediator, and its receptor exhibit seasonal differences in amplitude and phase, oscillating at higher amplitudes in the winter season with peak times occurring later in the day. Furthermore, the reduced photoperiod of winter coupled with seasonal alterations in physiological activity induces a more exacerbated immune response to acute stress, simulated in our studies as the administration of an acute dose of endotoxin. Our findings are therefore in accordance with experimental data that reflect the predominance of a proinflammatory state during the winter months. These changes in circadian rhythm dynamics may play a significant role in the seasonality of disease incidence and regulate the diurnal and seasonal variation of disease symptom severity.
机译:环境条件的季节性变化伴随着多种生物过程的重大调整。在温带地区,白天或光周期是一个强大的环境提示,可以使神经内分泌和代谢功能的季节性变化同步。在这项工作中,我们提出了一个半力学数学模型,该模型考虑了季节性光周期变化以及细胞和分子适应性的影响,以研究免疫功能的季节性。我们的模型预测,皮质醇,我们的促炎介质及其受体的昼夜节律在振幅和相位上表现出季节性差异,在冬季以较高的振幅振荡,而高峰时间则在当天晚些时候发生。此外,冬季光周期的减少加上生理活动的季节性变化会导致对急性应激的免疫反应加剧,这在我们的研究中被模拟为给予急性剂量的内毒素。因此,我们的发现与实验数据相符,这些数据反映了冬季炎性状态的普遍性。这些昼夜节律动态变化可能在疾病发病的季节性中起重要作用,并调节疾病症状严重程度的昼夜变化。

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