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首页> 外文期刊>Mathematical Biosciences: An International Journal >Patient-specific modeling of the neuroendocrine HPA-axis and its relation to depression: Ultradian and circadian oscillations
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Patient-specific modeling of the neuroendocrine HPA-axis and its relation to depression: Ultradian and circadian oscillations

机译:神经内分泌HPA轴的特定于患者的建模及其与抑郁的关系:Ultradian和昼夜节律振荡

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In the Western world approximately 10% of the population experience severe depression at least once in their lifetime and many more experience a mild form of depression. Depression has been associated with malfunctions in the hypothalamus pituitary adrenal (HPA) axis. We suggest a novel mechanistic nonlinear model capable of showing both circadian as well as ultradian oscillations of the hormone concentrations related to the HPA-axis. The fast ultradian rhythm is assumed to originate from the hippocampus whereas the slower circadian rhythm is assumed to be caused by the circadian clock. The model is able to describe the oscillatory patterns in hormone concentration data from 29 patients and healthy controls. Using non-linear mixed effects modeling with statistical hypothesis testing, three of the model parameters are identified to be related to depression. These parameters represent underlying physiological mechanisms controlling the average levels as well as the ultradian frequencies and amplitudes of the hormones ACTH and cortisol. The results are promising since they point toward an exact etiology for depression. As a consequence new biomarkers and pharmaceutical targets may be identified. (C) 2014 Elsevier Inc. All rights reserved.
机译:在西方世界,大约10%的人口在一生中至少经历过一次严重的抑郁症,而更多的人则经历了轻度的抑郁症。抑郁症与下丘脑垂体肾上腺(HPA)轴功能异常有关。我们建议一种新颖的机械非线性模型,能够显示与HPA轴相关的激素浓度的昼夜节律和超周期振荡。快速的超节奏被认为起源于海马,而较慢的昼夜节律被认为是由昼夜节律引起的。该模型能够描述来自29位患者和健康对照组的激素浓度数据中的振荡模式。使用带有统计假设检验的非线性混合效应建模,可以确定三个模型参数与抑郁症相关。这些参数代表控制激素ACTH和皮质醇的平均水平以及超音速频率和振幅的潜在生理机制。该结果指向抑郁症的确切病因,因此其结果令人鼓舞。结果,可以确定新的生物标志物和药物靶标。 (C)2014 Elsevier Inc.保留所有权利。

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