Transition Physiology · Symptom Patterns
Korn TF et al., 2026 · Headache
Migraine is a neurologic disorder that disproportionately affects women and undergoes important changes across the menopausal transition. Estrogen fluctuations contribute to migraine expression and underlie the 3:1 female-to-male prevalence. Perimenopause, marked by hormonal variability and rising cardiometabolic risk, presents unique diagnostic and therapeutic challenges. Despite its high prevalence, evidence specific to perimenopausal and postmenopausal women remains limited. This review synthesizes current evidence on the epidemiology, pathophysiology, and management of migraine across the menopausal transition, with attention to hormone therapy, comorbidities, and emerging treatments. We conducted a narrative review of clinical and translational studies published within the past 5 years, supplemented by seminal mechanistic, epidemiologic, and guideline-defining studies published earlier. Relevant guideline statements from neurology, gynecology, and cardiovascular societies were also incorporated. Unstable estradiol and progesterone levels during perimenopause can worsen migraine frequency and predictability. Migraine without aura often improves after menopause, whereas migraine with aura tends to persist and independently increases the risk of ischemic stroke and other vascular events. Midlife comorbidities-including vasomotor symptoms, sleep disturbance, mood disorders, and metabolic disease-further complicate management. Menopausal hormone therapy has variable effects. Oral estrogen, particularly at higher doses, may worsen migraine and elevate vascular risk, especially in women with aura. In contrast, low-dose transdermal estrogen-recommended by the North American Menopause Society-appears safer and better tolerated. Continuous progestogen regimens may reduce withdrawal-related attacks compared with cyclic regimens. Nonhormonal options, particularly selective norepinephrine reuptake inhibitors, may be considered when vasomotor symptoms coexist, whereas migraine-specific prevention should follow established evidence-based therapies. Traditional migraine therapies (triptans, NSAIDs, beta-blockers, topiramate, antidepressants) remain central but require tailoring to vascular, bone, and metabolic health. Newer agents-including calcitonin gene-related peptide monoclonal antibodies, gepants, and ditans-offer effective, non-vasoconstrictive alternatives, especially for women with cardiovascular contraindications. Migraine during the menopausal transition reflects the interplay between hormonal dynamics and systemic health. Management requires balancing efficacy with vascular and metabolic safety while incorporating patient preferences. Evidence gaps include the lack of trials stratified by menopausal stage or migraine subtype. Multidisciplinary, menopause-informed care and prospective studies are needed to optimize outcomes in this population.
Ovarian Hormones · Androgens
Xie C et al., 2026 · Molecular Medicine Reports
The present study investigated the role of melatonin (MT) in regulating mitochondrial function via sirtuin 3 (SIRT3) in granulosa cells (GCs) from patients with polycystic ovary syndrome (PCOS), with a focus on mitochondrial protection. Notably, GCs isolated from patients with PCOS exhibited mitochondrial dysfunction. Using an in vitro PCOS model established by treating KGN cells with dihydrotestosterone (DHT), decreased SIRT3 expression, dysregulated mitochondrial dynamics and hyperactivation of mitophagy were observed. Both SIRT3 overexpression and MT treatment restored the mitochondrial membrane potential, rebalanced mitochondrial dynamics and suppressed excessive autophagy in DHT-treated cells. Additionally, MT levels were shown to be reduced in the follicular fluid of patients with PCOS. Notably, the protective effects of MT on proteins associated with both mitochondrial dynamics and autophagy were abolished upon SIRT3 inhibition. In conclusion, mitochondrial dysfunction and aberrant mitophagy in GCs may serve a role in the pathogenesis of PCOS. MT appears to ameliorate these defects by modulating mitochondrial dynamics and function in a SIRT3-dependent manner. Moreover, the current study identified SIRT3 as a key molecular target of MT in PCOS.
Ovarian Hormones · Androgens
Napolean N et al., 2026 · Cureus
Background Polycystic ovary syndrome (PCOS) is a heterogeneous endocrine-metabolic disorder characterized by reproductive, hormonal, and metabolic disturbances. This study aimed to evaluate the association between clinical features, anthropometric indices, hormonal parameters, metabolic profile, ultrasonographic findings, and the second-to-fourth digit (2D:4D) ratio in women with PCOS compared to age-matched healthy controls. Methods A case-control study was conducted, including women diagnosed with PCOS and age-matched healthy controls. Clinical features, anthropometric measurements (BMI, waist-hip ratio (WHR), waist-height ratio (WHtR)), hormonal parameters (luteinizing hormone (LH), follicle-stimulating hormone (FSH), anti-Müllerian hormone (AMH)), metabolic variables (fasting glucose, lipid profile), ultrasonographic findings, and 2D:4D digit ratio were assessed. Statistical analysis was performed using appropriate tests, and a p-value < 0.05 was considered statistically significant. Results Women with PCOS exhibited a significantly higher prevalence of menstrual irregularity, polycystic ovarian morphology, hirsutism, and acne (p < 0.001). Hormonal analysis showed significantly elevated LH, FSH, and AMH levels in PCOS cases (p < 0.001). Anthropometric indices, including BMI, WHR, and WHtR, were significantly higher among PCOS cases (p < 0.01), indicating increased general and central adiposity. In contrast, fasting glucose and lipid profile levels did not differ significantly between groups. Additionally, the 2D:4D ratio was significantly lower in PCOS cases (p < 0.01) and showed significant negative correlations with BMI, WHR, WHtR, and cholesterol levels. Conclusion The study demonstrates that PCOS is associated with significant hormonal dysregulation, central obesity, and early metabolic alterations. The lower 2D:4D ratio observed in PCOS supports the role of prenatal androgen exposure in disease pathogenesis. These findings highlight the complex interplay between developmental, metabolic, and endocrine factors in PCOS and underscore the importance of early identification and comprehensive management strategies.
Ovarian Hormones · Androgens
Senthilkumar H et al., 2025 · Journal of translational medicine
Polycystic ovary syndrome (PCOS) is an endocrine disorder that affects reproductive-aged women worldwide, causing hormonal imbalances and ovarian dysfunction. PCOS affects metabolic health and increases the risk of obesity, insulin resistance, and cardiovascular disease, in addition to infertility. This review delves deeper into the connections of gut microbiota with PCOS pathophysiology, particularly into its impact on hormone metabolism, obesity, inflammation, and insulin resistance by way of short-chain fatty acids, lipopolysaccharides, and gut-brain axis. Studies also show that changes in the metabolic processes and immune responses are seen in changes in the gut microbiota in PCOS subjects, such as changes in the Bacteroidetes and Firmicutes groups. Some bacteria, like Escherichia and Shigella, have been associated with dysbiosis in patients with PCOS, leading to systemic inflammation and changed hormone levels, which further worsen the clinical symptoms. Therapeutic interventions targeting the gut microbiota comprise probiotics, prebiotics, and fecal microbiota transplantation; these have potential to alleviate the symptoms of PCOS. Other precision microbiome-based therapies include postbiotics, and CRISPR-Cas9 genome editing, which are relatively new avenues toward precision treatment. This complex interlink of gut microbiota and PCOS pathophysiology will open the avenues for possible treatments for hormonal imbalances and metabolic problems that characterize these complex disorders. The review here focuses on the requirement of further studies to be able to elucidate the specific pathways relating gut microbiota dysregulation to PCOS and, thus, improve microbiome-based therapies for better clinical outcomes in affected individuals.