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皮质类固醇结合球蛋白的昼夜节律对氢化可的松给药后皮质醇暴露的影响很小。

The circadian rhythm of corticosteroid-binding globulin has little impact on cortisol exposure after hydrocortisone dosing.

机构信息

Department of Clinical Pharmacy and Biochemistry, Institute of Pharmacy, Freie Universitaet Berlin, Berlin, Germany.

Graduate Research Training Program, PharMetrX, Berlin, Germany.

出版信息

Clin Endocrinol (Oxf). 2019 Jul;91(1):33-40. doi: 10.1111/cen.13969. Epub 2019 Apr 9.

Abstract

CONTEXT

Optimization of hydrocortisone replacement therapy is important to prevent under- and over dosing. Hydrocortisone pharmacokinetics is complex as circulating cortisol is protein bound mainly to corticosteroid-binding globulin (CBG) that has a circadian rhythm.

OBJECTIVE

A detailed analysis of the CBG circadian rhythm and its impact on cortisol exposure after hydrocortisone administration.

DESIGN AND METHODS

CBG was measured over 24 hours in 14 healthy individuals and, employing a modelling and simulation approach using a semi-mechanistic hydrocortisone pharmacokinetic model, we evaluated the impact on cortisol exposure (area under concentration-time curve and maximum concentration of total cortisol) of hydrocortisone administration at different clock times and of the changing CBG concentrations.

RESULTS

The circadian rhythm of CBG was well described with two cosine terms added to the baseline of CBG: baseline CBG was 21.8 µg/mL and interindividual variability 11.9%; the amplitude for the 24 and 12 hours cosine functions were relatively small (24 hours: 5.53%, 12 hours: 2.87%) and highest and lowest CBG were measured at 18:00 and 02:00, respectively. In simulations, the lowest cortisol exposure was observed after administration of hydrocortisone at 23:00-02:00, whereas the highest was observed at 15:00-18:00. The differences between the highest and lowest exposure were minor (≤12.2%), also regarding the free cortisol concentration and free fraction (≤11.7%).

CONCLUSIONS

Corticosteroid-binding globulin has a circadian rhythm but the difference in cortisol exposure is ≤12.2% between times of highest and lowest CBG concentrations; therefore, hydrocortisone dose adjustment based on time of dosing to adjust for the CBG concentrations is unlikely to be of clinical benefit.

摘要

背景

优化氢化可的松替代疗法对于预防剂量不足和过量非常重要。氢化可的松的药代动力学较为复杂,因为循环皮质醇主要与皮质类固醇结合球蛋白(CBG)结合,而 CBG 具有昼夜节律。

目的

详细分析 CBG 的昼夜节律及其对氢化可的松给药后皮质醇暴露的影响。

设计和方法

在 14 名健康个体中测量了 24 小时内的 CBG,并采用半机械氢化可的松药代动力学模型进行建模和模拟,我们评估了在不同时钟时间给予氢化可的松以及 CBG 浓度变化对皮质醇暴露(总皮质醇的浓度-时间曲线下面积和最大浓度)的影响。

结果

CBG 的昼夜节律可以通过在 CBG 的基线水平上添加两个余弦项来很好地描述:CBG 的基线水平为 21.8μg/mL,个体间变异性为 11.9%;24 小时和 12 小时余弦函数的幅度相对较小(24 小时:5.53%,12 小时:2.87%),最高和最低 CBG 分别在 18:00 和 02:00 测量到。在模拟中,氢化可的松在 23:00-02:00 给药后观察到皮质醇暴露最低,而在 15:00-18:00 给药后皮质醇暴露最高。最高和最低暴露之间的差异较小(≤12.2%),游离皮质醇浓度和游离分数也较小(≤11.7%)。

结论

皮质类固醇结合球蛋白具有昼夜节律,但在 CBG 浓度最高和最低时皮质醇暴露的差异≤12.2%;因此,基于时间调整氢化可的松剂量以调整 CBG 浓度不太可能具有临床益处。

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