Impact of Prasterone on Cardiometabolic Indicators in Perimenopausal Women.
2026年5月20日 更新者:Lorena del Rocio Ibarra Reynoso、Universidad de Guanajuato
Perimenopause is the natural transition period towards menopause, in which the ovarian reserve begins to decrease, and the woman loses her fertility.
It usually starts around the age of 40 and has a variable duration.
It has been identified that the decrease in estrogen levels leads to the development of metabolic and cardiovascular complications, such as metabolic syndrome.
Dehydroepiandrosterone (DHEA) is a hormone that converts to testosterone and estrogen and is mainly associated with age-related changes in cardiovascular tissues and metabolism, among others.
This hormone declines with age, contributing to the development of age-related disorders, such as cardiovascular disease.
In theory, DHEA has beneficial effects in regulating glucose and lipid metabolism and in ameliorating obesity.
It is hypothesized that DHEAS and cardiovascular disease may share causal pathways, for example, nitric oxide synthesis and endothelial cell damage.
In addition, it has been observed that the administration of DHEA significantly reduces the level of triglycerides and improves insulin sensitivity.
There are few studies focused on the perimenopause stage and none of them focused on the prevention of cardiometabolic risk.
Therefore, evaluating the impact of prasterone on cardiometabolic indicators in premenopausal women is essential.
研究概览
详细说明
Perimenopause is the natural transition period towards menopause, in which the ovarian reserve begins to decrease, and the woman loses her fertility.
It usually starts around the age of 40 and has a variable duration.
It has been identified that the decrease in estrogen levels leads to the development of metabolic and cardiovascular complications, such as metabolic syndrome.
Dehydroepiandrosterone (DHEA) is a hormone that converts to testosterone and estrogen and is primarily associated with age-related changes in cardiovascular tissues, female fertility, and metabolism, among others.
This hormone gradually declines with age, contributing to the development of age-related disorders, such as cardiovascular disease.
In theory, DHEA has beneficial effects in regulating glucose and lipid metabolism and in ameliorating obesity.
Previous studies have shown that DHEA is inversely associated with cholesterol levels, obesity, and diabetes, playing an important preventive role in cardiovascular disease.
It is hypothesized that DHEAS and cardiovascular disease may share causal pathways, for example, nitric oxide synthesis and endothelial cell damage.
Some studies in premenopausal women found inverse correlations between serum DHEA concentrations and body weight.
Besides.
It has been observed that the administration of DHEA significantly reduces the level of triglycerides and improves insulin sensitivity.
A meta-analysis showed that DHEAS was lower in patients with coronary disease, therefore, it is suggested that low levels of DHEAS may be a risk factor for coronary disease, affecting quality of life, and increasing the risks that predispose to metabolic diseases.
Most of the studies where DHEA is administered are focused on the menopause stage, there being few studies focused on the perimenopause stage and none of them on the prevention of Cardiometabolic risk.
For this reason, it is important to carry out studies to find out the effects that prasterone has on cardiometabolic indicators and that can contribute to the understanding of these processes before menopause appears.
This study was conducted in 25 women older than 42 years in the perimenopausal stage, with no history of breast cancer, hormonal replacement therapy , morbid obesity, cardiovascular disease, or diabetes mellitus.
They were prescribed 50mg/day of prasterone for a period of 2 months, making 3 measurements (baseline, one month and two months).
Anthropometric (weight, height, waist and hip circumference) and biochemical (glucose and cholesterol, triglycerides, HDL, LDL and VLDL) variables were evaluated, as well as blood pressure.
Cardiometabolic risk predictors were evaluated, such as the triglyceride-glycemia index, the triglyceride/HDL-C index, the waist-height index (WHtR), the cardiometabolic index, the Lipid Accumulation Product and visceral adiposity index.
研究类型
介入性
注册 (实际的)
25
阶段
- 第三阶段
联系人和位置
本节提供了进行研究的人员的详细联系信息,以及有关进行该研究的地点的信息。
学习地点
-
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Guanajuato
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Mexico City、Guanajuato、墨西哥、36000
- Universidad de Guanajuato
-
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参与标准
研究人员寻找符合特定描述的人,称为资格标准。这些标准的一些例子是一个人的一般健康状况或先前的治疗。
资格标准
适合学习的年龄
- 成人
- 年长者
接受健康志愿者
是的
描述
Inclusion Criteria:
- with no history of breast cancer, HRT, morbid obesity, cardiovascular disease, or DM.
Exclusion Criteria:
-
学习计划
本节提供研究计划的详细信息,包括研究的设计方式和研究的衡量标准。
研究是如何设计的?
设计细节
- 主要用途:预防
- 分配:不适用
- 介入模型:单组作业
- 屏蔽:无(打开标签)
武器和干预
参与者组/臂 |
干预/治疗 |
|---|---|
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实验性的:Prasterone prescription
The participantes were prescribed 50mg/day of prasterone for a period of 2 months, making 3 measurements (0, 4 and 8 weeks)
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The participants were prescribed 50mg/day of prasterone for a period of 2 months, making 3 measurements (0, 4 and 8 weeks)
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研究衡量的是什么?
主要结果指标
结果测量 |
措施说明 |
大体时间 |
|---|---|---|
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Cardiometabolic risk
大体时间:Two months
|
The primary objective is to assess the impact of oral DHEA therapy in perimenopausal women on cardiometabolic indicators.
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Two months
|
次要结果测量
结果测量 |
措施说明 |
大体时间 |
|---|---|---|
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Cardiometabolic risk
大体时间:0, 4 and 8 weeks
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Assessing the effects of oral dehydroepiandrosterone (DHEA) therapy using the following indices:
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0, 4 and 8 weeks
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合作者和调查者
在这里您可以找到参与这项研究的人员和组织。
调查人员
- 首席研究员:Lorena Ibarra Reynoso, PhD、Universidad de Guanajuato
出版物和有用的链接
负责输入研究信息的人员自愿提供这些出版物。这些可能与研究有关。
一般刊物
- Anagnostis P, Bitzer J, Cano A, Ceausu I, Chedraui P, Durmusoglu F, Erkkola R, Goulis DG, Hirschberg AL, Kiesel L, Lopes P, Pines A, van Trotsenburg M, Lambrinoudaki I, Rees M. Menopause symptom management in women with dyslipidemias: An EMAS clinical guide. Maturitas. 2020 May;135:82-88. doi: 10.1016/j.maturitas.2020.03.007. Epub 2020 Mar 16.
- Rabijewski M, Papierska L, Binkowska M, Maksym R, Jankowska K, Skrzypulec-Plinta W, Zgliczynski W. Supplementation of dehydroepiandrosterone (DHEA) in pre- and postmenopausal women - position statement of expert panel of Polish Menopause and Andropause Society. Ginekol Pol. 2020;91(9):554-562. doi: 10.5603/GP.2020.0091.
- Teixeira CJ, Veras K, de Oliveira Carvalho CR. Dehydroepiandrosterone on metabolism and the cardiovascular system in the postmenopausal period. J Mol Med (Berl). 2020 Jan;98(1):39-57. doi: 10.1007/s00109-019-01842-5. Epub 2019 Nov 12.
- Vegunta S, Kling JM, Kapoor E. Androgen Therapy in Women. J Womens Health (Larchmt). 2020 Jan;29(1):57-64. doi: 10.1089/jwh.2018.7494. Epub 2019 Nov 5.
- Sahu P, Gidwani B, Dhongade HJ. Pharmacological activities of dehydroepiandrosterone: A review. Steroids. 2020 Jan;153:108507. doi: 10.1016/j.steroids.2019.108507. Epub 2019 Oct 3.
- Teixeira CJ, Ribeiro LM, Veras K, da Cunha Araujo LC, Curi R, de Oliveira Carvalho CR. Dehydroepiandrosterone supplementation is not beneficial in the late postmenopausal period in diet-induced obese rats. Life Sci. 2018 Jun 1;202:110-116. doi: 10.1016/j.lfs.2018.03.052. Epub 2018 Mar 27.
- Oh H, Wild RA, Manson JE, Bea JW, Shadyab AH, Pfeiffer RM, Saquib N, Underland L, Anderson GL, Xu X, Trabert B. Obesity, Height, and Serum Androgen Metabolism among Postmenopausal Women in the Women's Health Initiative Observational Study. Cancer Epidemiol Biomarkers Prev. 2021 Nov;30(11):2018-2029. doi: 10.1158/1055-9965.EPI-21-0604. Epub 2021 Aug 26.
- Tang J, Chen LR, Chen KH. The Utilization of Dehydroepiandrosterone as a Sexual Hormone Precursor in Premenopausal and Postmenopausal Women: An Overview. Pharmaceuticals (Basel). 2021 Dec 29;15(1):46. doi: 10.3390/ph15010046.
- Martinez-Garcia G, Rodriguez-Ramos M, Santos-Medina M, Mata-Cuevas LA, Carrero-Vazquez AM, Chipi-Rodriguez Y. Triglyceride-glucose index impact on in-hospital mortality in acute myocardial infarction. Results from the RECUIMA multicenter registry. Gac Med Mex. 2022;158(2):83-89. doi: 10.24875/GMM.M22000646.
- Lu Y, Liu S, Qiao Y, Li G, Wu Y, Ke C. Waist-to-height ratio, waist circumference, body mass index, waist divided by height0.5 and the risk of cardiometabolic multimorbidity: A national longitudinal cohort study. Nutr Metab Cardiovasc Dis. 2021 Aug 26;31(9):2644-2651. doi: 10.1016/j.numecd.2021.05.026. Epub 2021 Jun 4.
- Liu X, Wu Q, Yan G, Duan J, Chen Z, Yang P, Bragazzi NL, Lu Y, Yuan H. Cardiometabolic index: a new tool for screening the metabolically obese normal weight phenotype. J Endocrinol Invest. 2021 Jun;44(6):1253-1261. doi: 10.1007/s40618-020-01417-z. Epub 2020 Sep 9.
- Wu TT, Gao Y, Zheng YY, Ma YT, Xie X. Association of endogenous DHEA/DHEAS with coronary heart disease: A systematic review and meta-analysis. Clin Exp Pharmacol Physiol. 2019 Nov;46(11):984-994. doi: 10.1111/1440-1681.13146. Epub 2019 Aug 29.
- Wakabayashi I, Daimon T. The "cardiometabolic index" as a new marker determined by adiposity and blood lipids for discrimination of diabetes mellitus. Clin Chim Acta. 2015 Jan 1;438:274-8. doi: 10.1016/j.cca.2014.08.042. Epub 2014 Sep 6.
- Baez-Duarte BG, Zamora-Ginez I, Rodriguez-Ramirez SO, Pesqueda-Cendejas LK, Garcia-Aragon KH. TG/HDL index to identify subjects with metabolic syndrome in the Mexican population. Gac Med Mex. 2022;158(5):259-264. doi: 10.24875/GMM.M22000693.
- Farinola MG, Sganga M. [Cut-off points of anthropometric markers for hypertension and hyperglycemia in Argentine adults: a cross-sectional study from the 4th ENFR]. Rev Fac Cien Med Univ Nac Cordoba. 2022 Sep 16;79(3):260-266. doi: 10.31053/1853.0605.v79.n3.37313. Spanish.
- Qiao T, Luo T, Pei H, Yimingniyazi B, Aili D, Aimudula A, Zhao H, Zhang H, Dai J, Wang D. Association between abdominal obesity indices and risk of cardiovascular events in Chinese populations with type 2 diabetes: a prospective cohort study. Cardiovasc Diabetol. 2022 Nov 1;21(1):225. doi: 10.1186/s12933-022-01670-x.
- Vega-Cardenas M, Flores-Sanchez J, Torres-Rodriguez ML, Sanchez-Armass Capello O, Vargas-Morales JM, Cossio-Torres PE, Teran-Garcia M, Aradillas-Garcia C. [Distribution of triglycerides and glucose (TyG) index and homeostasis model assessment insulin resistance for the evaluation of insulin sensitivity on late adolescence in Mexicans]. Nutr Hosp. 2022 Dec 20;39(6):1349-1356. doi: 10.20960/nh.04120. Spanish.
研究记录日期
这些日期跟踪向 ClinicalTrials.gov 提交研究记录和摘要结果的进度。研究记录和报告的结果由国家医学图书馆 (NLM) 审查,以确保它们在发布到公共网站之前符合特定的质量控制标准。
研究主要日期
学习开始 (实际的)
2020年1月10日
初级完成 (实际的)
2020年12月20日
研究完成 (实际的)
2021年1月10日
研究注册日期
首次提交
2023年4月1日
首先提交符合 QC 标准的
2026年5月20日
首次发布 (实际的)
2026年5月27日
研究记录更新
最后更新发布 (实际的)
2026年5月27日
上次提交的符合 QC 标准的更新
2026年5月20日
最后验证
2026年5月1日
更多信息
与本研究相关的术语
其他研究编号
- CIBIUG-P38-2016
计划个人参与者数据 (IPD)
计划共享个人参与者数据 (IPD)?
不
药物和器械信息、研究文件
研究美国 FDA 监管的药品
不
研究美国 FDA 监管的设备产品
不
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