根据墨西哥城绝经后妇女体重和体脂分布,Kupperman指数与雌激素和雄激素水平的相关性

Sebastián Carranza-Lira, Guillermina Velasco Díaz, Aleida Olivares, Rosario Chán Verdugo, Joaquín Herrera
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引用次数: 0

摘要

目的:了解绝经后妇女体重和体脂分布对Kupperman指数(KI)和激素水平的影响,因为肥胖和脂肪分布影响激素水平。材料与方法:对125名绝经后妇女进行研究,按体重指数(BMI)和腰臀比(WHR)分为正常体重(BMI <或= 27)、肥胖(BMI > 27);低水平体脂分布(WHR < or = 0.85)和高水平体脂分布(WHR >0.85)。然后分为4个亚组:(I) BMI <或= 27,WHR <或= 0.85;(II) BMI <或= 27,WHR > 0.85; (III) BMI >27, WHR <或= 0.85;(IV) BMI >27, WHR > 0.85。用Kupperman指数分析更年期症状。用放射免疫法测定雌酮、雌二醇、睾酮、雄烯二酮和硫酸脱氢表雄酮,并用化学发光法验证。计算雄烯二酮-雌二醇和睾酮-雌二醇比值。统计分析采用独立样本的Student’st检验加Pearson相关分析。结果:平均年龄53.0±6.5岁,绝经时间74.2±64.3个月。体脂分布水平较低者与体脂分布水平较高者相比,体脂分布水平较高者A水平显著低于体脂分布水平(P < 0.04)。与亚组III和亚组IV相比,亚组I的Kupperman指数明显降低。亚组IV的雄烯二酮水平低于亚组III。在整个样本中,WHR与睾酮(0.297,P < 0.004)和睾酮-雌二醇比(0.209,P < 0.04)相关。结论:睾酮-雌二醇比值与症状有较好的相关性,可用于评价主诉更年期症状的更年期患者。
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Correlation of Kupperman's index with estrogen and androgen levels, according to weight and body fat distribution in postmenopausal women from Mexico City.

Objectives: To establish the differences in Kupperman's index (KI) and hormone levels according to weight and body fat distribution in postmenopausal women, since obesity and fat distribution affect hormone levels.

Material and methods: One hundred and twenty-five postmenopausal women were studied and divided according to body mass index (BMI) and waist-hip ratio (WHR): normal weight (BMI < or = 27), obesity (BMI > 27); lower-level body fat distribution (WHR < or = 0.85) and upper-level body fat distribution (WHR >0.85). Afterwards four subgroups were created: (I) BMI < or = 27 and WHR < or = 0.85, (II) BMI < or = 27 and WHR > 0.85, (III) BMI > 27 and WHR < or = 0.85, and (IV) BMI >27 and WHR > 0.85. Climacteric symptoms were analyzed with Kupperman's index. Estrone, estradiol, testosterone, androstenedione, and dehydroepiandrosterone sulfate determinations were done by radioimmunoassay and verified by chemoluminescence. The androstenedione-estrone and testosterone-estradiol ratios were calculated. Statistical analysis was by Student's t test for independent samples, plus Pearson's correlation analysis.

Results: Average age was 53.0 +/- 6.5 years, time since menopause 74.2 +/- 64.3 months. When comparing those with lower-level body fat distribution and those with upper-level body fat distribution, the A levels were significantly lower (P < 0.04) in those with upper-level distribution. Kupperman's index was significantly lower in subgroup I when compared with subgroups III and IV. The androstenedione level was lower in subgroup IV compared with subgroup III. In the whole sample, there was a correlation of the WHR with testosterone (0.297, P < .004) and the testosterone-estradiol ratio (0.209, P < .04).

Conclusion: It was shown that the testosterone-estradiol ratio has a better correlation with the symptoms, so it can be used to evaluate climacteric patients when they complain of menopausal symptoms.

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