Golden, N. H., & Carlson, J. L. (2008). The pathophysiology of amenorrhea in the adolescent. Annals of the New York Academy of Sciences, 1135, 163-78. https://doi.org/10.1196/annals.1429.014
Golden NH, Carlson JL. The pathophysiology of amenorrhea in the adolescent. Annals of the New York Academy of Sciences. 2008;1135:163-78. doi:10.1196/annals.1429.014
Golden, N. H., and J. L. Carlson. "The pathophysiology of amenorrhea in the adolescent." Annals of the New York Academy of Sciences, vol. 1135, 2008, pp. 163-78.
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Abstract
Menstrual irregularity is a common occurrence during adolescence, especially within the first 2-3 years after menarche. Prolonged amenorrhea, however, is not normal and can be associated with significant medical morbidity, which differs depending on whether the adolescent is estrogen-deficient or estrogen-replete. Estrogen-deficient amenorrhea is associated with reduced bone mineral density and increased fracture risk, while estrogen-replete amenorrhea can lead to dysfunctional uterine bleeding in the short term and predispose to endometrial carcinoma in the long term. In both situations, appropriate intervention can reduce morbidity. Old paradigms of whom to evaluate for amenorrhea have been challenged by recent research that provides a better understanding of the normal menstrual cycle and its variability. Hypothalamic amenorrhea is the most prevalent cause of amenorrhea in the adolescent age group, followed by polycystic ovary syndrome. In anorexia nervosa, exercise-induced amenorrhea, and amenorrhea associated with chronic illness, an energy deficit results in suppression of hypothalamic secretion of GnRH, mediated in part by leptin. Administration of recombinant leptin to women with hypothalamic amenorrhea has been shown to restore LH pulsatility and ovulatory menstrual cycles. The use of recombinant leptin may improve our understanding of the pathophysiology of hypothalamic amenorrhea in adolescents and may also have therapeutic possibilities.
Mansfield MJ et al., 1984·Journal of Reproductive Medicine
Amenorrhea and oligomenorrhea in the adolescent female are often the result of anovulation due to an immature hypothalamic-pituitary-ovarian axis. A careful history, physical examination and selected laboratory tests can help to differentiate this type of transient menstrual irregularity from the large number of endocrine and anatomic abnormalities that also present in this age group. The HPO axis is not fully mature at menarche. Since the positive feedback response to estrogen, which allows ovulation, is frequently absent in the immediate postmenarchial period, menstrual irregularity is common: 55% of cycles are anovulatory in the 1st year. With further maturation of the HPO axis a pattern of regular ovulatory cycles emerges. Basic evaluation is indicated if menarche does not occur by age 16 or if secondary sexual development does not begin by age 14. Secondary amenorrhea is the absence of menses for at least 3 months in a patient who previously had established cycles. Causes of amenorrhea in adolescents include pregnancy, drugs and systemic diseases, hypothalamic and pituitary amenorrhea, postpill amenorrhea, hyperprolactinemia, androgen resistance, congenital anomalies of the genital tract, and androgen excess.
Amenorrhea is a diagnostic criterion for anorexia nervosa (AN), although menstrual cycles have been found to persist in some women with all the other features of AN. This study sought to determine factors that are associated with amenorrhea in 39 women with current primary spectrum AN. The use of exercise to control weight (odds ratio (OR) = 3.5; 95% confidence interval (CI) = 1.3-9.9; P = .02), low novelty seeking scores (OR = 0.7; 95% CI = 0.58-0.94; P = .02), and low systolic blood pressure (OR = 0.9; 95% CI = 0.84-0.99; P = .046) were predictors of amenorrhea independent of body mass index.
A physically active and athletic lifestyle is not only a healthy but a fulfilling choice for women. Although there is extensive literature on 'athletic amenorrhoea' which implies that exercise causes loss of the menstrual cycle, there is inadequate scientific evidence for a causal relationship. The reproductive system adapts to environmental, nutritional, emotional and physical stressors or 'threats' by downward adjustment towards the premenarcheal pattern. The hormonal milieu of this adaptation is low gonadal steroid and high glucocorticoid levels which synergistically increase the risk for a negative bone balance. Athletic women may become amenorrhoeic if reproductive immaturity, emotional stress and undernutrition coexist with increasing exercise loads. Treatment for athletic women with menstrual cycle changes requires that hypothalamic stressors be identified and decreased. In addition, as progesterone deficiency (from disorders of ovulation, whether flow is regular or absent) is the most prevalent menstrual cycle change, treatment with medroxyprogesterone on days 16 to 25 of their cycle will not only provide regular flow (if estrogen levels are sufficient) but will also promote increased bone density.
Popat VB et al., 2008·Ann N Y Acad Sci·Free full text on PubMed Central
Menstruation is the cyclic, orderly sloughing of the uterine lining on account of the interactions of hormones produced by the hypothalamus, pituitary, and ovaries. There is a tendency among parents and clinicians to view oligo-amenorrhea as a normal variant in the teen years. In fact, the 95th percentile for the time interval between cycles is 90 days. Thus, it is abnormal for an adolescent to be amenorrheic for greater than 3 months, even in the early gynecologic years. Identification of abnormal menstrual patterns throughout adolescence may permit early identification of potential health concerns for adulthood. Few problems in gynecologic endocrinology are as complex or challenging to the clinician as amenorrhea. However, thorough evaluation of menstrual cycle disorders in adolescence provides a window of opportunity for early diagnosis and treatment of conditions affecting the hypothalamic-pituitary-ovarian (HPO) axis. Here we discuss a systematic approach to the evaluation and treatment of amenorrhea in adolescents who do not have androgen excess. There is strong evidence that estrogen deficiency is a risk factor for later development of osteoporosis and hip fracture. Delay in the evaluation and treatment of disordered menses in some cases may contribute to reduced bone density. Both patients and clinicians need to view the ovary as an important endocrine organ that helps maintain health, especially bone health.
Reproductive Endocrinology › Neuroendocrinology › Hypothalamic Amenorrhea · Menstrual Cycle › Cycle Disorders › Amenorrhea · Lifestyle and Environment › Nutrition and Metabolic Health › Eating Disorders and Underfueling
PMID 18574222 18574222 DOI 10.1196/annals.1429.014 10.1196/annals.1429.014 Golden et al. 2008, Golden 2008
Cite this article
Golden, N. H., & Carlson, J. L. (2008). The pathophysiology of amenorrhea in the adolescent. Annals of the New York Academy of Sciences, 1135, 163-78. https://doi.org/10.1196/annals.1429.014
Golden NH, Carlson JL. The pathophysiology of amenorrhea in the adolescent. Annals of the New York Academy of Sciences. 2008;1135:163-78. doi:10.1196/annals.1429.014
Golden, N. H., and J. L. Carlson. "The pathophysiology of amenorrhea in the adolescent." Annals of the New York Academy of Sciences, vol. 1135, 2008, pp. 163-78.