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Gestational exposure to ethane dimethanesulfonate permanently alters reproductive competence in the CD-1 mouse
Dana K Tarka-Leeds1, Juan D Suarez, Naomi L Roberts
1Curriculum in Toxicology, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599-7270, USA.
Abstract:
Although the adult mouse Leydig cell (LC) has been considered refractory to cytotoxic destruction by ethane dimethanesulfonate (EDS), the potential consequences of exposure during reproductive development in this species are unknown. Herein pregnant CD-1 mice were treated with 160 mg/kg on Gestation Days 11-17, and reproductive development in male offspring was evaluated. Prenatal administration of EDS compromised fetal testosterone (T) levels, compared with controls. EDS-exposed pups recovered their steroidogenic capacities after birth because T production by hCG-stimulated testis parenchyma from prepubertal male offspring was unchanged. However, prepubertal testes from prenatally exposed males contained seminiferous tubules (STs) devoid of germ cells, indicating a delay in spermatogenesis. In adults, some STs in exposed males still contained incomplete germ cell associations corroborating observed reductions in epididymal sperm reserves, fertility ratios, and litter size. Morphometry revealed an EDS-induced increase in interstitial area and a concomitant decrease in ST area, but stereology revealed an unexpected decrease in the number and size of the LCs per testis in exposed males. Paradoxically, there was an increase in both serum LH and T production by adult testis parenchyma, indicating that the LCs were hyperstimulated. These data demonstrate permanent lesions in LC development and spermatogenesis caused by prenatal exposure in mice. Thus, although adult mouse LCs are insensitive to EDS, EDS appears to have direct action on fetal LCs, resulting in abnormal testis development.
Insights
Prenatal exposure to ethane dimethanesulfonate (EDS) permanently damages Leydig cell (LC) development and impairs spermatogenesis in male mice, leading to abnormal testis development and reduced fertility.
Area of Science:
- Reproductive toxicology
- Developmental biology
- Endocrinology
Background:
- Adult mouse Leydig cells (LCs) are considered resistant to ethane dimethanesulfonate (EDS).
- The effects of prenatal EDS exposure on male reproductive development are not well understood.
Purpose of the Study:
- To investigate the consequences of prenatal exposure to EDS on male mouse reproductive development.
- To evaluate the impact of EDS on Leydig cell development and spermatogenesis.
Main Methods:
- Pregnant CD-1 mice were administered EDS (160 mg/kg) during Gestation Days 11-17.
- Reproductive development, testosterone levels, spermatogenesis, and Leydig cell morphology were assessed in male offspring.
- Hormone levels (testosterone, LH) and sperm reserves were quantified.
Main Results:
- Prenatal EDS exposure reduced fetal testosterone levels but did not affect postnatal steroidogenic capacity.
- Prepubertal testes showed delayed spermatogenesis with germ cell-depleted seminiferous tubules.
- Adult males exhibited reduced sperm reserves, fertility, and litter size, with abnormal Leydig cell numbers and hyperstimulation.
Conclusions:
- Prenatal EDS exposure causes permanent damage to Leydig cell development and spermatogenesis in mice.
- Despite adult Leydig cell insensitivity to EDS, fetal Leydig cells are susceptible, leading to abnormal testicular development.