Background: The timing of puberty is highly sensitive to environmental factors, including endocrine disruptors. Among them, bisphenol A (BPA) has been previously analyzed as potential modifier of puberty. Yet, disparate results have been reported, with BPA advancing, delaying, or being neutral in its effects on puberty onset. Likewise, mechanistic analyses addressing the central and peripheral actions/targets of BPA at puberty remain incomplete and conflictive.
Objective: We aimed to provide a comprehensive characterization of the impact of early BPA exposures, especially at low, real-life doses, on the postnatal development of hypothalamic Kiss1/NKB neurons, and its functional consequences on female pubertal maturation.
Methods: Pregnant CD1 female mice were orally administered BPA at 5, 10, or body weight (BW)/d from gestational day 11 to postnatal day 8 (PND8). Vaginal opening, as an external marker of puberty onset, was monitored daily from PND19 to PND30 in the female offspring. Blood and brain samples were collected at PND12, 15, 18, 21, and 30 for measuring circulating levels of gonadotropins and analyzing the hypothalamic expression of Kiss1/kisspeptin and NKB.
Results: Perinatal exposure to BPA, in a range of doses largely below the no observed adverse effect level (NOAEL; BW/d, according to the FDA), was associated with pubertal differences in the female progeny compared with those exposed to vehicle alone, with an earlier age of vaginal opening but consistently lower levels of circulating luteinizing hormone. Mice treated with BPA exhibited a persistent, but divergent, impairment of Kiss1 neuronal maturation, with more kisspeptin cells in the rostral (RP3V) hypothalamus but consistently fewer kisspeptin neurons in the arcuate nucleus (ARC). Detailed quantitative analysis of the ARC population, essential for pubertal development, revealed that mice treated with BPA had persistently lower Kiss1 expression during (pre)pubertal maturation, which was associated with lower Tac2 (encoding NKB) levels, even at low doses ( BW/d), in the range of the tolerable daily intake (TDI), recently updated by the European Food Safety Authority.
Conclusions: Our data attest to the consistent, but divergent, effects of gestational exposures to low concentrations of BPA, via the oral route, on phenotypic and neuroendocrine markers of puberty in female mice, with an unambiguous impact on the developmental maturation not only of Kiss1, but also of the NKB system, both essential regulators of puberty onset. https://doi.org/10.1289/EHP5570.
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http://dx.doi.org/10.1289/EHP5570 | DOI Listing |
Neurology
January 2025
Department of Neurology, UCSF Weill Institute for Neurosciences, University of California San Francisco.
Background And Objective: The impact of menopause on the brain is not well understood. Hormonal changes, including puberty and pregnancy, influence the onset and course of multiple sclerosis (MS). After menopause, a worsening of MS disease trajectory measured on the clinician-rated Expanded Disability Status Scale (EDSS) was reported in some, but not all, studies.
View Article and Find Full Text PDFBackground: Puberty menorrhagia, characterized by prolonged and excessive menstrual bleeding between menarche and 19 years of age, presents clinical challenges at adolescents and it is attributed to an immature hypothalamo-pituitary-ovarian axis, leading to sustained high estrogen levels and anovulation. This case report explores the efficacy of acupuncture as an adjunctive therapy for pubertal menorrhagia of a 16-year-old female with a history of irregular menstrual cycles and excessive bleeding for 41 days.
Methodology: Based on Traditional Chinese Medicine (TCM) tongue and pulse diagnostics of the patient, acupuncture needling at SP4 (Gongsun), PC 6 (Neiguan), KI 14 (Siman), SP 10 (Xuehai), LR 1 (Dadun), CV 6 (Qihai) was given once in a day for a month, each session lasting 20 min targeting to alleviate Liver blood stasis.
J Endocrinol Invest
December 2024
Pediatric Clinic, Department of Medicine and Surgery, University Hospital of Parma, University of Parma, Parma, 43126, Italy.
Purpose: Puberty is a key phase of growth and development, characterized by psychophysical transformations. It is driven by a combination of genetic, hormonal, and environmental variables. Epigenetic mechanisms, including histone post-translational modifications and chromatin remodeling, microRNAs, and DNA methylation, play important roles in orchestrating the developmental processes.
View Article and Find Full Text PDFPediatr Res
December 2024
The Institute of Pediatric Endocrinology, Diabetes and Metabolism, Dana-Dwek Children's Hospital, Tel Aviv Sourasky Medical Center, Tel Aviv, Israel affiliated to the Faculty of Medicine, Tel Aviv University, Tel Aviv, Israel.
Background: Premature adrenarche (PA) has been reported as a potential precursor of metabolic disease. We aimed to explore the interaction between body composition and cardiometabolic health of prepubertal children with PA.
Methods: This observational study comprised of 87 children with PA (15 boys, 8.
J Sex Res
December 2024
Stigma and Resilience Among Vulnerable Youth Centre, University of British Columbia.
Sexual minority youth, compared to their heterosexual peers, have a disproportionate burden of sexual risks, but it remains unclear whether such inequalities exist across cultures and countries. We used data from eight European countries participating in the 2018 Health Behaviour in School-aged Children (HBSC) study to analyze sexual behavior in representative samples of adolescents aged 14.5-16.
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