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甘草次酸的给药:血清水平与血清及尿液中皮质醇/可的松比值之间存在显著相关性。

Administration of glycyrrhetinic acid: significant correlation between serum levels and the cortisol/cortisone-ratio in serum and urine.

作者信息

Heilmann P, Heide J, Hundertmark S, Schöneshöfer M

机构信息

Department of Clinical Chemistry, Krankenhaus Berlin-Spandau, Berlin, Germany.

出版信息

Exp Clin Endocrinol Diabetes. 1999;107(6):370-8. doi: 10.1055/s-0029-1212128.

Abstract

In vitro, cortisol and aldosterone have a similar affinity to the mineralocorticoid receptor. The 11beta-hydroxysteroid dehydrogenase catalyzes the interconversion of cortisol to its inactive 11-oxo-metabolite cortisone. This interconversion is responsible for the in vivo specificity of the mineralocorticoid receptor. A defect of this enzyme leads to a pseudohyperaldosteronism with hypertension and hypokalemia, the so-called apparent mineralocorticoid excess syndrome. Glycyrrhetinic acid, a compound of licorice, also leads to pseudohyperaldosteronism by an inhibition of the 11beta-hydroxysteroid dehydrogenase. We studied the pharmacokinetics of glycyrrhetinic acid and its effect on the 11beta-hydroxysteroid dehydrogenase. Ten healthy students, aged 24 to 38 years, were included in the study. On the first day 500 mg glycyrrhetinic acid were given orally at 08.00 h. Blood and urine samples were taken prior to and 2, 4, 7, 10 and 24 hours after ingestion of glycyrrhetinic acid. We measured the serum level of cortisol, cortisone and glycyrrhetinic acid and the urinary excretion rates of cortisol, cortisone and their 20-dihydrometabolites. For determination of glycyrrhetinic acid and steroid levels we used a fully automated liquid chromatographic analyzer which allows the highly specific and simultaneous determination of steroid profiles even in the matrix of urine. Ratios of the 11-hydroxy- and 11-oxo-metabolites were calculated and correlated to the serum level of glycyrrhetinic acid. We found a significant correlation of the steroid-ratios to the serum levels of glycyrrhetinic acid. Coefficients of correlation were 0.9873, 0.7812, 0.7396 and 0.5844 between the serum level of glycyrrhetinic acid and the cortisol/cortisone-ratio in serum (p < 0.0001), the cortisol/cortisone-ratio in urine (p = 0.0279), the 20alpha-dihydrocortisol/20alpha-dihydrocortisone-ratio in urine (p = 0.0119) and the 20beta-dihydrocortisol/20beta-dihydrocortisone-ratio in urine (p = 0.0419), respectively. We conclude that the ratios of cortisol to cortisone and of the 20-dihydrometabolites of cortisol to the 20-dihydrometabolites of cortisone provide a simple noninvasive tool for monitoring the in-vivo activity of the 11beta-hydroxysteroid dehydrogenase.

摘要

在体外,皮质醇和醛固酮对盐皮质激素受体具有相似的亲和力。11β-羟基类固醇脱氢酶催化皮质醇向其无活性的11-氧代代谢产物可的松的相互转化。这种相互转化决定了盐皮质激素受体在体内的特异性。该酶的缺陷会导致伴有高血压和低钾血症的假性醛固酮增多症,即所谓的表观盐皮质激素过多综合征。甘草次酸是甘草的一种化合物,它也通过抑制11β-羟基类固醇脱氢酶导致假性醛固酮增多症。我们研究了甘草次酸的药代动力学及其对11β-羟基类固醇脱氢酶的影响。10名年龄在24至38岁之间的健康学生被纳入该研究。第一天,在08:00口服500毫克甘草次酸。在摄入甘草次酸之前以及之后2、4、7、10和24小时采集血液和尿液样本。我们测量了皮质醇、可的松和甘草次酸的血清水平以及皮质醇、可的松及其20-二氢代谢产物的尿排泄率。为了测定甘草次酸和类固醇水平,我们使用了一台全自动液相色谱分析仪,它能够在尿液基质中甚至高度特异性且同时地测定类固醇谱。计算了11-羟基代谢产物与11-氧代代谢产物的比率,并将其与甘草次酸的血清水平相关联。我们发现类固醇比率与甘草次酸的血清水平之间存在显著相关性。甘草次酸的血清水平与血清中皮质醇/可的松比率(p < 0.0001)、尿中皮质醇/可的松比率(p = 0.0279)、尿中20α-二氢皮质醇/20α-二氢可的松比率(p = 0.0119)以及尿中20β-二氢皮质醇/20β-二氢可的松比率(p = 0.0419)之间的相关系数分别为0.9873、0.7812、0.7396和0.5844。我们得出结论,皮质醇与可的松的比率以及皮质醇的20-二氢代谢产物与可的松的20-二氢代谢产物的比率为监测11β-羟基类固醇脱氢酶的体内活性提供了一种简单的非侵入性工具。

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