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Long-term Behavioral and Reproductive Consequences of Embryonic Exposure to Low-dose Toxicants
Published on: March 6, 2018
Prenatal exposure to a phthalate mixture leads to multigenerational and transgenerational effects on uterine
Kailiang Li1, Monika Liszka1, Changqing Zhou2
1Department of Animal Sciences, University of Illinois, Urbana, IL, United States.
Insights
Prenatal exposure to a phthalate mixture negatively impacts female reproductive health across multiple generations in mice. These endocrine disruptors caused uterine changes and reduced progesterone, highlighting risks of combined phthalate exposure.
Area of Science:
- Reproductive Toxicology
- Endocrinology
- Environmental Health
Background:
- Phthalates are common endocrine-disrupting chemicals found in numerous consumer products.
- Human exposure typically involves mixtures of various phthalates, not single compounds.
- Previous research often examines single phthalates, limiting understanding of mixture effects.
Purpose of the Study:
- To investigate the multi-generational effects of prenatal exposure to an environmentally relevant phthalate mixture on uterine morphology and function in mice.
- To assess changes in reproductive parameters and gene expression following exposure.
Main Methods:
- Pregnant mice (CD-1 dams) were orally administered a phthalate mixture or vehicle from gestational day 10.5 to parturition.
- The phthalate mixture comprised diethyl phthalate, di-(2-ethylhexyl) phthalate, dibutyl phthalate, diisononyl phthalate, diisobutyl phthalate, and benzylbutyl phthalate.
- Subsequent generations (F1, F2, F3) were bred, and female reproductive tissues were analyzed at 13 months of age.
Main Results:
- Phthalate mixture exposure led to decreased progesterone levels in the F2 generation.
- Altered luminal epithelial cell proliferation and reduced Hand2 expression were observed in exposed F2 mice.
- Increased incidence of multilayered luminal epithelium, dilated endometrial glands, smooth muscle actin expression, and collagen deposition were noted across all generations.
Conclusions:
- Prenatal exposure to an environmentally relevant phthalate mixture induces adverse, multi-generational effects on the female mouse uterus.
- The study demonstrates significant alterations in uterine morphology and function, indicating potential reproductive health risks.
- Findings underscore the importance of evaluating the impact of chemical mixtures in environmental health research.
Abstract:
Phthalates are commonly used plasticizers and additives that are found in plastic containers, children's toys and medical equipment. Phthalates are classified as endocrine-disrupting chemicals and exposure to phthalates has been associated with several human health risks including reproductive defects. Most studies focus on a single phthalate; however, humans are exposed to a mixture of phthalates daily. We hypothesized that prenatal exposure to an environmentally relevant phthalate mixture would lead to changes in uterine morphology and function in mice in a multi-generational manner. To test this hypothesis, pregnant CD-1 dams were orally dosed with vehicle or a phthalate mixture (20 μg/kg/day, 200 μg/kg/day, 200 mg/kg/day, and 500 mg/kg/day) from gestational day 10.5 to parturition. The mixture contained 35 % diethyl phthalate, 21 % di-(2-ethylhexyl) phthalate, 15 % dibutyl phthalate, 15 % diisononyl phthalate, 8% diisobutyl phthalate, and 5% benzylbutyl phthalate. The F1 pups were maintained and mated to produce two more generations (F2 and F3). At the age of 13 months, all females were euthanized and tissue samples were collected in diestrus. Our results showed that exposure to a phthalate mixture caused a decrease in progesterone levels in the treated groups in the F2 generation. The 200 mg/kg/day treatment group showed a decreased and increased luminal epithelial cell proliferation in the F1 and F2 generations respectively. In addition, these mice in the F2 generation had reduced Hand2 expression in the sub-epithelial stroma compared to the controls. A higher incidence of multilayered luminal epithelium and large dilated endometrial glands were observed in the phthalate mixture exposed groups in all generations. The mixture also caused a higher incidence of smooth muscle actin expression and collagen deposition in the endometrium compared to controls. Collectively, our results demonstrate that prenatal exposure to an environmentally relevant phthalate mixture can have adverse effects on female reproductive functions.
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