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Estrogenic induction of spermatogenesis in the hypogonadal mouse
F J Ebling1, A N Brooks, A S Cronin
1School of Biomedical Sciences, University of Nottingham Medical School, Queen's Medical Centre, United Kingdom. fran.ebling@nottingham.ac.uk
Abstract:
Abnormal sperm production and reduced fertility have been reported in transgenic male mice lacking the alpha-subtype of the estrogen receptor (ER)alpha or aromatase. The aim of this study was to investigate the role of estrogen in male reproductive function, by determining the effect of estradiol on testicular function in hypogonadal (hpg) mice congenitally lacking gonadotropin; and thus, sex steroid production. hpg mice were treated, at 2-3 months of age, with slow-release estradiol implants, which achieved circulating estradiol concentrations of approximately 40 pg/ml. Treatment for 35 days reliably induced a 4- to 6-fold increase in testicular weight, compared with the vestigial testes in the untreated or cholesterol-treated controls. The degree of testicular growth after 35 days was similar to that in hpg mice receiving an intrahypothalamic graft of preoptic area tissue taken from neonatal mice on the day of birth, a procedure known to induce testicular development in hpg mice by activation of the pituitary gland. Histological analysis revealed that the testes contained elongated spermatids after 35 days of estradiol treatment, whereas germ cell development never progressed beyond the pachytene stage in control hpg mice. Treatment for 70 days induced full qualitatively normal spermatogenesis in hpg mice. Testis weight increased 5-fold, reflecting a 5-fold increase in total seminiferous tubule volume and a 4- to 5-fold increase in the total volume of the seminiferous epithelium. In all experiments, spermatogenesis proceeded in the absence of measurable androgen concentrations, but circulating FSH concentrations were slightly (but significantly) elevated, relative to cholesterol-treated control hpg mice. This stimulatory action of estradiol on FSH secretion was unexpected, particularly because identical estradiol treatments significantly decreased serum FSH levels in wild-type littermates. These results indicate that estrogens may play a role in spermatogenesis, via stimulatory effects on FSH secretion. An alternative or complementary explanation, given the recent identification of estrogen receptors (ERalpha and ERbeta) and aromatase within various cell types in the testis, is that estrogens exert paracrine actions within the testis to promote spermatogenesis. The identification of effects of estradiol on testicular function provides a conceptual basis to reexamine the speculative link between increased exposure to environmental estrogens and reduced fertility in man.
Insights
Estradiol treatment significantly increased testicular weight and promoted sperm development in hypogonadal mice, suggesting a key role for estrogen in male fertility and spermatogenesis. This finding has implications for understanding environmental estrogen effects on human reproduction.
Area of Science:
- Reproductive Biology
- Endocrinology
- Molecular Biology
Background:
- Reduced fertility and abnormal sperm production are observed in male mice lacking estrogen receptor alpha (ERalpha) or aromatase.
- Estrogen's role in male reproductive function, particularly spermatogenesis, remains incompletely understood.
Purpose of the Study:
- To investigate the role of estrogen in male reproductive function by examining the effects of estradiol on testicular function.
- To determine the impact of estradiol on spermatogenesis in hypogonadal (hpg) mice, which lack gonadotropin and sex steroid production.
Main Methods:
- Hypogonadal (hpg) mice were treated with slow-release estradiol implants (approx. 40 pg/ml) for 35 or 70 days.
- Testicular weight, histology, germ cell development, and circulating hormone concentrations (FSH, androgens) were analyzed.
- Comparisons were made with untreated hpg mice, cholesterol-treated controls, and hpg mice with intrahypothalamic grafts.
Main Results:
- Estradiol treatment for 35 days significantly increased testicular weight (4-6 fold) and promoted germ cell development to elongated spermatids.
- Treatment for 70 days induced qualitatively normal spermatogenesis, with a 5-fold increase in testis weight, seminiferous tubule volume, and seminiferous epithelium volume.
- Spermatogenesis occurred without measurable androgens, and estradiol treatment paradoxically increased FSH in hpg mice, unlike in wild-type littermates.
Conclusions:
- Estradiol plays a crucial role in promoting spermatogenesis in male mice, potentially via stimulatory effects on FSH secretion.
- Estrogens may exert paracrine actions within the testis to support spermatogenesis, given the presence of estrogen receptors and aromatase in testicular cells.
- These findings provide a basis for re-evaluating the link between environmental estrogen exposure and reduced male fertility.