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模拟人工合成糖皮质激素时辰药理学给药对下丘脑-垂体-肾上腺轴的影响。

Modeling the influence of chronopharmacological administration of synthetic glucocorticoids on the hypothalamic-pituitary-adrenal axis.

机构信息

a Department of Chemical and Biochemical Engineering , Rutgers, The State University of New Jersey , Piscataway , New Jersey , USA.

b Department of Biomedical Engineering , Rutgers The State University of New Jersey , Piscataway , New Jersey , USA.

出版信息

Chronobiol Int. 2018 Nov;35(12):1619-1636. doi: 10.1080/07420528.2018.1498098. Epub 2018 Jul 30.

Abstract

Natural glucocorticoids, a class of cholesterol-derived hormones, modulate an array of metabolic, anti-inflammatory, immunosuppressive and cognitive signaling. The synthesis of natural glucocorticoids, largely cortisol in humans, is regulated by the hypothalamic-pituitary-adrenal (HPA) axis and exhibits pronounced circadian variation. Considering the central regulatory function of endogenous glucocorticoids, maintenance of the circadian activity of the HPA axis is essential to host survival and chronic disruption of such activity leads to systemic complications. There is a great deal of interest in synthetic glucocorticoids due to the immunosuppressive and anti-inflammatory properties and the development of novel dosing regimens that can minimize the disruption of endogenous activity, while still maintaining the pharmacological benefits of long-term synthetic glucocorticoid therapy. Synthetic glucocorticoids are associated with an increased risk of developing the pathological disorders related to chronic suppression of cortisol rhythmicity as a result of the potent negative feedback by synthetic glucocorticoids on the HPA axis precursors. In this study, a mathematical model was developed to explore the influence of chronopharmacological dosing of exogenous glucocorticoids on the endogenous cortisol rhythm considering intra-venous and oral dosing. Chronic daily dosing resulted in modification of the circadian rhythmicity of endogenous cortisol with the amplitude and acrophase of the altered rhythm dependent on the administration time. Simulations revealed that the circadian features of the endogenous cortisol rhythm can be preserved by proper timing of administration. The response following a single dose was not indicative of the response following long-term, repeated chronopharmacological dosing of synthetic glucocorticoids. Furthermore, simulations revealed the inductive influence of long-term treatment was only associated with low to moderate doses, while high doses generally led to suppression of endogenous activity regardless of the chronopharmacological dose. Finally, chronic daily dosing was found to alter the responsiveness of the HPA axis, such that a decrease in the amplitude of the cortisol rhythm resulted in a partial loss in the time-of-day dependent response to CRH stimulation, while an increase in the amplitude was associated with a more pronounced time-of-day dependence of the response.

摘要

天然糖皮质激素是一类胆固醇衍生的激素,调节多种代谢、抗炎、免疫抑制和认知信号。天然糖皮质激素的合成,在人类中主要是皮质醇,受下丘脑-垂体-肾上腺(HPA)轴的调节,并表现出明显的昼夜节律变化。考虑到内源性糖皮质激素的中枢调节功能,维持 HPA 轴的昼夜活动对于宿主的生存至关重要,而这种活动的慢性中断会导致全身并发症。由于合成糖皮质激素具有免疫抑制和抗炎特性,以及开发出能够最小化内源性活性中断的新型给药方案,因此人们对合成糖皮质激素非常感兴趣,同时仍能保持长期合成糖皮质激素治疗的药理益处。合成糖皮质激素会增加发生与皮质醇节律性慢性抑制相关的病理疾病的风险,这是由于合成糖皮质激素对 HPA 轴前体的强烈负反馈作用。在这项研究中,开发了一个数学模型来探索考虑静脉内和口服给药时,外源性糖皮质激素的时间药理学给药对内源性皮质醇节律的影响。慢性每日给药导致内源性皮质醇的昼夜节律性发生变化,改变节律的幅度和顶点取决于给药时间。模拟结果表明,通过适当的给药时间可以保留内源性皮质醇节律的昼夜特征。单次给药后的反应不能指示长期、重复时间药理学给药后合成糖皮质激素的反应。此外,模拟结果表明,长期治疗的诱导作用仅与低至中等剂量相关,而高剂量通常会导致内源性活性抑制,而与时间药理学剂量无关。最后,发现慢性每日给药会改变 HPA 轴的反应性,使得皮质醇节律幅度的降低导致对 CRH 刺激的时间依赖性反应部分丧失,而幅度的增加与反应的时间依赖性更加明显相关。

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