Prospectively Measured Levels of Serum Follicle-Stimulating Hormone, Estradiol, and the Dimeric Inhibins during the Menopausal Transition in a Population-Based Cohort of Women1

Author:

Burger Henry G.1,Dudley Emma C.2,Hopper John L.3,Groome Nigel4,Guthrie Janet R.2,Green Adele5,Dennerstein Lorraine2

Affiliation:

1. Prince Henry’s Institute of Medical Research (H.G.B.), Monash Medical Centre, Victoria 3168, Australia

2. The Office for Gender and Health (E.C.D., J.R.G., L.D.), Melbourne 3050, Australia

3. Department of General Practice and Public Health (J.L.H.), The University of Melbourne, Melbourne 3050, Australia

4. Oxford Brookes University (N.G.), Oxford OX3 OBP, United Kingdom

5. Queensland Institute of Medical Research (A.G.), Brisbane 4029, Queensland

Abstract

The aims of this study were: 1) to describe, in relation to the date of final menses, the average hormone levels of women in the years before and after this date and to determine the extent to which these average levels were dependent on age and body mass index (BMI); and 2) to determine the degree of tracking in residual hormone levels[ i.e., the extent to which individuals above (below) the mean for their age or time relative to final menstrual period (FMP) and BMI remain above (below) the mean as time progresses]. Serial levels of serum FSH, circulating estradiol (E2), and the dimeric inhibins (INH) A and B were measured annually in 150 women who experienced a natural menopause during 6 years of follow-up. Means of the log-transformed hormonal levels were analyzed as a double-logistic function of time relative to FMP, as well as age and BMI and correlations between repeated hormonal levels, were measured. Mean FSH levels started to increase from about 2 years before the FMP, increased most rapidly about 10 months before the FMP, and had virtually plateaued by 2 years after the FMP. FSH levels were, on average, 3% greater for each year of age and 2% lower for each kg/m2 of BMI. After adjusting for time relative to the FMP, logFSH showed modest tracking. Age-adjusted values of logFSH were moderately correlated across time, and much of this tracking was explained by the actual timing of a woman’s FMP. Mean E2 levels started to decrease about 2 years before the FMP, decreased most rapidly around the time of the FMP, and had virtually plateaued by 2 years after the FMP. E2 levels were lower, on average, by about 9% per year of age, and residual values showed weak tracking. Levels of both INHA and INHB decreased, on average, in the years before the FMP and were undetectable (INHA, <10 pg/mL; INHB, < 25 pg/mL) in the majority of women by the time of the FMP and in almost all women by 4 years post-FMP. Significant negative correlations between log serum FSH and log E2 (r = −0.73) and log INHA (r = −0.41) and log INHB (r = −0.36) were observed. It is concluded that substantial changes in reproductive hormone levels occur within 1–2 yr on each side of the FMP, that falling concentrations of E2 and the INH contribute to the rising concentrations of FSH, and that there is no single reliable hormonal marker of menopausal status for an individual woman.

Publisher

The Endocrine Society

Subject

Biochemistry (medical),Clinical Biochemistry,Endocrinology,Biochemistry,Endocrinology, Diabetes and Metabolism

Reference21 articles.

1. The endocrinology of the menopause.;Maturitas,1996

2. Follicular depletion during the menopausal transition: evidence for accelerated loss and ultimate exhaustion.;Richardson;J Clin Endocrinol Metab,1987

3. The endocrinology of the menopausal transition: a cross-sectional study of a population-based sample.;Burger;J Clin Endocrinol Metab,1995

4. A longitudinal study of the perimenopausal transition: altered profiles of steroid and pituitary hormones, SHBG and bone mineral density.;Rannevik;Maturitas,1995

5. Steroid and gonadotropin levels in women during the peri-menopausal years.;Longcope;Maturitas,1986

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