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Updated: Aug 1, 2026

Generation of a Mouse Artificial Decidualization Model with Ovariectomy for Endometrial Decidualization Research
Published on: July 27, 2022
Anovulation in cyclooxygenase-2-deficient mice is restored by prostaglandin E2 and interleukin-1beta
B J Davis1, D E Lennard, C A Lee
1Laboratory of Experimental Pathology, National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina 27709, USA. davis1@niehs.nih.gov
Abstract:
Mice carrying a null mutation for either of the two cyclooxygenase (COX) isoenzymes, necessary for prostanoid production, exhibit several isotype-specific reproductive abnormalities. Mice deficient in COX-1 are fertile but have decreased pup viability, whereas mice deficient in COX-2 fail to ovulate and have abnormal implantation and decidualization responses. The present study identifies the specific contribution of each COX isoenzyme in hypothalamic, pituitary, and ovarian function and establishes the pathology and rescue of the anovulatory syndrome in the COX-2-deficient mouse. In both COX-1- and COX-2-deficient mice, pituitary gonadotropins were selectively increased, whereas hypothalamic LHRH and serum gonadotropin levels were similar to those in wild-type animals (+/+). No significant differences in serum estrogen or progesterone were noted among the three genotypes. Exogenous gonadotropin stimulation with PMSG and hCG produced a comparable 4-fold increase in ovarian PGE2 levels in wild-type and COX-1(-/-) mice. COX-2(-/-) mice had no increase in PGE2 over PMSG-stimulated levels. Wild-type and COX-1(-/-) mice ovulated in response to PMSG/hCG; very few COX-2(-/-) animals responded to this regimen. The defect in ovulation in COX-2 mutants was attributed to both an abnormal cumulus oophorum expansion and subsequent stigmata formation. Gonadotropin stimulation and concurrent treatment with PGE2 or interleukin-1beta resulted in ovulation of COX-2(-/-) mice comparable to that in COX-2(+/+), whereas treatment with PGF2alpha was less effective. Collectively, these data demonstrate that COX-2, but not COX-1, is required for the gonadotropin induction of ovarian PG levels; that COX-2-related prostanoids are required for stabilization of the cumulus oophorum during ovulation; and that ovulation can be restored in the COX-2(-/-) animals by simultaneous treatment with gonadotropins and PGE2 or interleukin-1beta.
Insights
Cyclooxygenase-2 (COX-2) is essential for ovulation in mice, regulating ovarian prostaglandin production. Supplementing with PGE2 or interleukin-1beta can restore ovulation in COX-2 deficient mice.
Area of Science:
- Reproductive biology
- Biochemistry
- Endocrinology
Background:
- Cyclooxygenase (COX) enzymes produce prostanoids crucial for reproduction.
- COX-1 and COX-2 isoenzymes have distinct roles in reproductive processes.
- COX-2 deficiency leads to anovulation and implantation issues.
Purpose of the Study:
- Investigate the specific roles of COX-1 and COX-2 in hypothalamic-pituitary-ovarian function.
- Characterize the pathology of anovulation in COX-2 deficient mice.
- Determine if ovulation can be restored in COX-2 deficient mice.
Main Methods:
- Utilized COX-1 and COX-2 knockout mouse models.
- Administered gonadotropins (PMSG/hCG) and prostaglandins (PGE2, PGF2alpha).
- Measured gonadotropin levels, ovarian prostaglandin E2 (PGE2), and ovulation rates.
Main Results:
- COX-2, not COX-1, is required for gonadotropin-induced ovarian PGE2 production.
- COX-2 deficiency impairs cumulus oophorum expansion and ovulation.
- Ovulation was restored in COX-2 deficient mice with gonadotropins plus PGE2 or interleukin-1beta.
Conclusions:
- COX-2 plays a critical role in ovulation by mediating ovarian prostaglandin synthesis.
- COX-2-derived prostanoids are vital for oocyte maturation and release.
- Therapeutic interventions targeting COX-2 pathways may offer solutions for ovulatory disorders.
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