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首页> 外文期刊>Clinical Medicine Insights: Reproductive Health >Cortisol-Metabolizing Enzymes in Polycystic Ovary Syndrome
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Cortisol-Metabolizing Enzymes in Polycystic Ovary Syndrome

机译:多囊卵巢综合征中的皮质醇代谢酶。

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Objective The aim of this study was to assess the activity of cortisol-metabolizing enzymes in women with polycystic ovary syndrome (PCOS), using a fully quantitative gas chromatography/mass spectrometry (GCMS) method.Design We investigated the glucocorticoid degradation pathways that include llβ-hydroxysteroid dehydrogenase (llβ-HSD) type 1, 5α-reductase (5α-R) and 5β-reductase (5β-R), 3α-hydroxysteroid dehydrogenase, and 20α- and 20β-hydroxysteroid dehydrogenase (20α-HSD and 20β-HSD, respectively) in young nonobese women with PCOS, using a fully quantitative GCMS method.Setting This study was conducted in a tertiary referral hospital in Israel.Patients This study group consisted of 13 young women, aged 20.1 ±2.8 years (mean ± SD), with the body mass index (BMI) of 22.6 ± 3.7 kg/m2, diagnosed with PCOS according to the Rotterdam criteria. The control group consisted of 14 healthy young women matched for weight, height, and BMI.Interventions Urine samples were analyzed using GCMS. We measured urinary steroid metabolites that represent the products and substrates of the study enzymes and calculated the product/substrate ratios to represent enzyme activity.Main Outcome Measures The calculation of enzymatic activity, based on glucocorticoid degradation metabolites, was done by GCMS in PCOS vs. controls.Results All glucocorticoid degradation metabolites were higher in the PCOS group than in controls. Of the adrenal enzymes, the activities of 21-hydroxylase and 17α-hydroxylase were reduced, whereas the activity of 17,20-lyase was enhanced in PCOS. Of the degradation enzymes, the activity of 11β-HSD type 1 was reduced in women with PCOS only when calculated from cortoles and cortolones ratios. The activities of 5α-R/5β-R were increased only when calculating the 11-hydroxy metabolites of androgens. The activity of 20α-HSD was elevated in the patients with PCOS and its relation with the substrate levels was lost.Conclusions We confirm PCOS association with low 21-hydroxylase activity. PCOS is associated with dysregulation in glucocorticoid degradation. The activity of 5α-R is enhanced only through the backdoor pathway. Marked increase in the activity of 20α-HSD suggests a hitherto unknown derangement in PCOS.
机译:目的本研究旨在通过完全定量气相色谱/质谱法(GCMS)评估多囊卵巢综合征(PCOS)妇女的皮质醇代谢酶的活性。设计我们研究了包括llβ在内的糖皮质激素降解途径。 -羟基类固醇脱氢酶(IIβ-HSD)1型,5α-还原酶(5α-R)和5β-还原酶(5β-R),3α-羟基类固醇脱氢酶以及20α-和20β-羟基类固醇脱氢酶(20α-HSD和20β-HSD分别使用完全定量GCMS方法对患有PCOS的年轻非肥胖女性进行研究。背景本研究是在以色列的一家三级转诊医院进行的。患者包括13名年轻女性,年龄20.1±2.8岁(平均±SD)。 ,其体重指数(BMI)为22.6±3.7千克/平方米,根据鹿特丹标准诊断为PCOS。对照组由14名体重,身高和BMI相匹配的健康年轻女性组成。干预措施使用GCMS分析尿液样本。我们测量了代表研究酶产物和底物的尿类固醇代谢物,并计算了代表酶活性的产物/底物比例。主要结果测量方法基于GOS在PCOS vs.中,根据糖皮质激素降解代谢物计算酶活性。结果PCOS组所有糖皮质激素降解代谢产物均高于对照组。在肾上腺酶中,PCOS中21-羟化酶和17α-羟化酶的活性降低,而17,20-裂合酶的活性增强。在降解酶中,仅从皮质醇和皮质酮比例计算时,患有PCOS的女性中11β-HSD1型的活性降低。仅当计算雄激素的11-羟基代谢产物时,5α-R/5β-R的活性才增加。结论PCOS患者的20α-HSD活性升高,并且与底物水平的关系消失。结论我们确认PCOS与21-羟化酶活性低相关。 PCOS与糖皮质激素降解失调有关。 5α-R的活性仅通过后门途径得以增强。 20α-HSD活性的明显增加表明PCOS迄今未知的紊乱。

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