Aug 2026· Reproductive Toxicology· pp.
109337
· 0 citations· 41 references
Medicine
TL;DR
Results show that phthalates alter endometrial glycogen levels and expression of key enzymes, which are consistent with altered glycogen metabolism, which could alter endometrial glucose metabolism.
Abstract
Phthalates are associated with several reproductive disorders in women and reduce fertility in mice. They are also known to impair hepatic glycogen metabolism. Glucose is a crucial nutrient for the uterus, and glycogen buffers glucose concentration in the endometrium. The objective of this study was to investigate how long-term exposure to di(2-ethylhexyl) phthalate (DEHP) and diisononyl phthalate (DiNP) alters glycogen metabolism in the murine endometrium. Six-week-old female mice were fed chow containing vehicle or DEHP or DiNP at 0.15, 1.5, and 1500 parts per million (ppm) ad libitum for 9 months. Uteri were collected at diestrus. DEHP significantly reduced glycogen levels in the glandular epithelium (GE) and luminal epithelium (LE). In the stroma, both 1.5 and 1500 ppm groups had significantly lower glycogen. In the DiNP-treated mice, all three concentrations significantly decreased glycogen in GE, LE, and stroma. Neither phthalate altered mRNA levels of hexokinase1 (Hk1), glycogen synthase 1 (Gys1), glycogen phosphorylase M (Pygm), or glucose-6-phosphatase 3 (G6pc3). Immunohistochemistry showed that both phthalates increased HK1 levels in the stroma but not the epithelium. DEHP and DiNP (1500 ppm) increased PYGM in GE, LE, and stroma. DiNP (1500 ppm) significantly lowered G6PC3 in LE compared to all other groups. In the GE, both 1.5 and 1500 ppm DiNP decreased the immunostaining of G6PC3 compared to control and 0.15 ppm DiNP. Our results show that phthalates alter endometrial glycogen levels and expression of key enzymes. These findings are consistent with altered glycogen metabolism, which could alter endometrial glucose metabolism.
Di(2-ethylhexyl) phthalate (DEHP) and diisononyl phthalate (DiNP) are plasticizers used in many consumer products. Both phthalates alter estrous cyclicity, fertility indices, and folliculogenesis throughout the reproductive lifespan. Our companion paper showed that exposure to a phthalate mixture containing DEHP and Di...
A. E. Dean, R. Santacruz-Márquez, A. Safar et al.· Toxicological Sciences· 0 citations
Due to its versatile use, di(2-ethylhexyl) phthalate (DEHP) is omnipresent in the environment and has become a significant health concern. Gestational exposure to contaminants may disrupt fetal intrauterine development and, in the long term, affect the postnatal stage. The present study aimed to investigate the effects...
H. Zaman, M. Haque, M. Mobarak et al.· Journal of Advanced Biotechn...· 0 citations
Humans are ubiquitously exposed to di(2-ethylhexyl) phthalate (DEHP), which is a phthalate plasticizer used in consumer goods that has been identified as a reproductive toxicant. DEHP toxicity is mediated by mono(2-ethylhexyl) phthalate (MEHP), its bioactive metabolite that has been shown to target ovarian processes, i...
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It is demonstrated that environmental-level DEHA exposure promoted obesity and hepatic steatosis in female mice by disturbing the PPARγ signaling pathway and upregulating ER stress-related genes, highlighting a significant and previously underappreciated health risk of DEHA in females and calling for a reassessment of...
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The plasticizer butyl benzyl phthalate (BBP), a ubiquitous endocrine disruptor, is commonly used in PVC products and can leach into the environment, leading to human exposure. BBP has been detected in the placenta, amniotic fluid, and breast milk, indicating potential exposure during gestation and lactation. BBP is an...
D. L. Ruiz-Antonio, K. Nava-Castro, C. Garay-Canales et al.· Frontiers in Immunology· 0 citations
It is suggested that liver-adipose tissue crosstalk may be involved in metabolic disturbances associated with DEHP exposure in HF diet-fed rats, and further studies including DEHP-only groups under regular diet conditions are needed.
Zhen-Hua Yang, Jia-Min Zhou, Xian-Yun Zheng et al.· Journal of Environmental Sci...· 0 citations
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