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Updated: Jun 16, 2026

An In Vivo Estrogen Deficiency Mouse Model for Screening Exogenous Estrogen Treatments of Cardiovascular Dysfunction After Menopause
Published on: August 13, 2019
Absence of estrogen receptor alpha leads to physiological alterations in the mouse epididymis and consequent defects
Avenel Joseph1, Rex A Hess, David J Schaeffer
1Department of Veterinary Biosciences, College of Veterinary Medicine, University of Illinois, Urbana-Champaign, Illinois, USA.
Abstract:
Male mice deficient in ESR1 (ERalpha) (Esr1KO mice) are infertile, and sperm recovered from the cauda epididymis exhibit reduced motility and fail to fertilize eggs in vitro. These effects on sperm appear to result from defective epididymal function and not a direct effect on spermatogenesis, as Esr1KO germ cells transplanted into wild-type testes yield normal offspring. We hypothesized that the previously described defect in efferent duct fluid reabsorption would lead to alterations in the epididymal fluid milieu, which would negatively impact sperm function. Analysis of the epididymal fluid revealed that the Esr1KO maintains a higher luminal pH throughout the epididymis, confirming an inability of the efferent ducts and/or epididymis to properly acidify the luminal contents. Subsequent studies showed that these abnormalities were not the result of global defects in epididymal function since protein secretion by the Esr1KO epididymis appeared normal as judged by SDS-PAGE of total secreted proteins and by immunoblotting of candidate secreted proteins. To gain insight into the basis of the aberrant fluid homeostasis in the Esr1KO epididymis, the expression of several enzymes and transporters known to be involved in acid/base regulation were analyzed. The levels of SLC9A3 (NHE3) as well as carbonic anhydrase XIV and SLC4A4 (NBC1) were all reduced in the proximal portion of the Esr1KO epididymis, while other components appeared unaffected, including other ion transporters and ATP6V0A1 (V-ATPase). The altered luminal milieu of the Esr1KO epididymis was shown to lead to a corresponding increase in the intracellular pH of Esr1KO sperm, relative to sperm from control animals. Since pH and bicarbonate ions are critical regulators of sperm cAMP levels and motility, we attempted to bypass the abnormal luminal and intracellular environment by supplementing sperm with exogenous cAMP. This treatment rescued all defective motility parameters, as assayed by CASA, further showing that motility defects are not intrinsic to the sperm but, rather, result from the abnormal epididymal milieu.
Insights
Male mice lacking estrogen receptor 1 (ESR1) show infertility due to impaired sperm motility. This is caused by abnormal epididymal fluid pH, not sperm defects, and can be corrected with cAMP supplementation.
Area of Science:
- Reproductive Biology
- Endocrinology
- Sperm Physiology
Background:
- Estrogen receptor 1 (ESR1) plays a crucial role in male fertility.
- ESR1 deficiency in mice (Esr1KO) leads to infertility and impaired sperm function.
Purpose of the Study:
- To investigate the impact of ESR1 deficiency on epididymal function and sperm quality.
- To determine the role of epididymal fluid pH in sperm motility defects in Esr1KO mice.
Main Methods:
- Analysis of epididymal fluid pH and composition in Esr1KO and wild-type mice.
- Assessment of sperm motility using CASA (Computer-Aided Sperm Analysis).
- Measurement of intracellular sperm pH and protein expression of key transporters.
Main Results:
- Esr1KO mice exhibit increased epididymal luminal pH due to reduced expression of transporters like SLC9A3 (NHE3), SLC4A4 (NBC1), and carbonic anhydrase XIV.
- This altered pH leads to increased intracellular pH in Esr1KO sperm.
- Exogenous cAMP supplementation rescued sperm motility defects in Esr1KO mice.
Conclusions:
- ESR1 is essential for maintaining proper epididymal fluid homeostasis and pH.
- Abnormal epididymal pH, not intrinsic sperm defects, causes the observed infertility in Esr1KO mice.
- Targeting epididymal pH or cAMP signaling may offer therapeutic strategies for male infertility.
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