Evidence suggests that shiftwork is associated with menstrual irregularities, reproductive disturbances, risk of adverse pregnancy outcome, and sleep disturbances in women, yet little has been done to evaluate the effects of shiftwork on menstrual function and fertility. The purpose of this study was to evaluate menstrual function, fertility, and pregnancy outcome in nurses working shiftwork, and to examine the relationship of sleep to menstrual function. Sixty-eight nurses < 40 years old completed a survey evaluating sleep, menstrual function, and pregnancy outcome. Fifty-three percent of the women noted menstrual changes when working shiftwork. Women noting menstrual changes reported more physiological symptoms (p < 0.003), slept approximately one hour less when working nights, and reported lengthened time to fall asleep (p < 0.01) when working nights. Findings suggest that sleep disturbances may lead to menstrual irregularities, and changes in menstrual function may be a marker of shiftwork intolerance.
Vigil P et al., 2022·Front Glob Womens Health·
Open Access
Stress is known to be associated with adverse health outcomes. The COVID-19 pandemic and its associated lockdowns are examples of chronic stressors. Lockdown measures inadvertently caused significant psychological distress and became a powerful source of anxiety/stress, sleep disturbances, nutritional changes and weight gain. Stress is known to impact women's health specifically, through hypothalamic-pituitary-gonadal (HPG) axis dysfunction and resultant ovulatory dysfunction. Such dysfunction may manifest in menstrual irregularities and/or infertility due to hypothalamic hypogonadism. Here, we review the key physiological mediators of stress and associated ovulatory dysfunction. The kisspeptinergic system is comprised of sets of neurons located in the hypothalamus, the rostral periventricular region of the third ventricle (RP3V) and the arcuate nucleus (ARC). This system links nutrition, reproductive signals and stress. It plays a key role in the function of the HPG axis. During chronic stress, the kisspeptinergic system affects the HPG axis, GnRH pulsatility, and, therefore, ovulation. Leptin, insulin and corticotrophin-releasing hormone (CRH) are thought to be additional key modulators in the behavioral responses to chronic stress and may contribute to stress-related ovulatory dysfunction. This mini-review also summarizes and appraises the available evidence on the negative impact of chronic stress as a result of the COVID-19 pandemic lockdowns. It proposes physiological mechanisms to explain the observed effects on women's reproductive health and well-being. The review suggests areas for future research.
Reproductive change during conditioning exercise (physical training provides a model of hypothalamic adaptation to alterations in the external and internal environment. Parallels exist between the reproductive changes with exercise and those occurring with physical illness, undernutrition and psychological trauma. Although menstrual cyclicity may be disrupted in younger women, luteal phase shortening, anovulation and decreased premenstrual symptoms within normal ovulatory cycles are the most frequent observations noted. Baseline LH, prolactin and oestradiol tend to be lower, and other hormones unchanged, in trained women. Testosterone may be decreased within the normal range in men. Recent evidence shows that LH pulse frequency, amplitude and area under the LH curve are decreased in both female and male runners. Interrelationships between increases in central dopamine, endorphin and probably some hypothalamic message(s) relating to nutritional state appear to modulate these reproductive changes. The clinical and therapeutic response to reproductive alterations in the context of exercise differs when these are seen as adaptive and not as disease processes (Prior and Vigna, 1985b).
Practice Committee of the American Society for Reproductive Medicine and Practice Committee of the Society for Reproductive Endocrinology and Infertility, 2026·Fertility and sterility
Luteal phase deficiency (LPD) is a clinical diagnosis associated with abnormal luteal phase length of ≤10 days. Potential etiologies of LPD include inadequate progesterone duration, inadequate progesterone levels, or endometrial progesterone resistance. Luteal phase deficiency has been described in association with medical conditions, but also in fertile, normally menstruating women. Although progesterone is important for the process of implantation and early embryonic development, LPD has not been proven to be an independent entity causing infertility or recurrent pregnancy loss. Controversy exists regarding the multiple proposed measures for diagnosing LPD, and assuming it can be diagnosed accurately, whether treatment improves outcomes. This document replaces the document of the same name, last published in 2021 (Fertil Steril 2021;115(6):1416-23).
Metabolic and Endocrine Agents · GLP-1 Receptor Agonists
Carmina E et al., 2026·Journal of clinical medicine
Irregular menses and chronic anovulation are key components of Polyendocrine Metabolic Ovarian Syndrome (PMOS), but available treatments generally only mask the clinical problem, which presents itself again when the drugs are stopped. Because reduction of body weight in these patients is often associated with improvement of menstrual cycles, we evaluated the effects of treatment with semaglutide, a GLP-1 agonist that has emerged as an effective treatment for obesity. A total of 96 women with PMOS and body mass index (BMI) > 25 kg/m2 completed a six-month treatment protocol with semaglutide using an individualized dose-escalation regimen. Body weight, fasting glucose, insulin levels, insulin resistance (HOMA-IR), and ovulatory function were assessed before and after treatment. After six months of treatment, mean body weight decreased significantly (-11.3 ± 5%, p < 0.01). Before treatment, 83% of PMOS patients presented with oligomenorrhea and anovulatory cycles. Following treatment, ovulatory cycles were observed in 52.5% of previously anovulatory women. The results were particularly good in overweight patients, with almost 95% of these PMOS patients achieving menstrual cycle normalization and ovulation, but also in patients with mild obesity. Results were less favorable in PMOS patients with moderate or severe obesity, but 25% of these patients achieved menstrual ovulatory cycle normalization when treated with semaglutide. This study represents an important therapeutic advancement, suggesting that women with PMOS and excessive body weight should be considered for treatment with GLP-1 receptor agonists before proceeding to therapies specifically aimed at inducing normal cycles and ovulation.