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Updated: May 23, 2026

A Syngeneic Murine Model of Endometriosis using Naturally Cycling Mice
Published on: November 24, 2020
Localization and hormonal regulation of endometrial matrix metalloproteinase-26 in the rhesus macaque
C C D Almeida-Francia1, C S Keator, K Mah
1Department of Anatomy, Institute of Biosciences, Univ Estadual Paulista, Botucatu, São Paulo, Brazil.
Background:
The current understanding of hormonal regulation of matrix metalloproteinase-26 (MMP-26) in the primate endometrium is incomplete. The goal of this work was to clarify estrogen and progesterone regulation of MMP-26 in the endometrium of ovariectomized, hormone-treated rhesus macaques.
Methods:
Ovariectomized rhesus macaques (n= 66) were treated with estradiol (E(2)), E(2) plus progesterone, E(2) followed by progesterone alone or no hormone. Endometrium was collected from the hormone-treated animals during the early, mid- and late proliferative and secretory phases of the artificial menstrual cycle. MMP-26 expression was quantified by real-time PCR, and MMP-26 transcript and protein were localized by in situ hybridization and immunohistochemistry and correlated with estrogen receptor 1 and progesterone receptor (PGR).
Results:
MMP-26 was localized to glandular epithelium and was undetectable in the endometrial stroma and vasculature. MMP-26 transcript levels were minimal in the hormone-deprived macaques and treatment with E(2) alone did not affect MMP-26 levels. Treatment with progesterone both in the presence and absence of E(2) stimulated MMP-26 expression in the early and mid-secretory phases (P < 0.001). MMP-26 expression preceded decidualization of endometrial stroma. MMP-26 levels then declined to baseline in the late secretory phase (P < 0.01) despite continued E(2) plus progesterone treatment. Loss of detectable MMP-26 expression in the late secretory phase was correlated with late secretory phase loss of glandular epithelial PGR.
Conclusions:
Endometrial MMP-26 expression is dependent on the presence of progesterone in the early secretory phase and then gradually becomes refractory to progesterone stimulation in the late secretory phase. In the macaque, MMP-26 is a marker of the pre-decidual, secretory endometrium. During the second half of the late secretory phase, and during decidualization, MMP-26 loses its response to progesterone concurrent with the loss of epithelial PGR. The decline in MMP-26 levels between the mid- and late secretory phases may play a role in the receptive window for embryo implantation.
Insights
Progesterone stimulates matrix metalloproteinase-26 (MMP-26) in the early secretory endometrium, but expression declines later. MMP-26 is a marker of the receptive endometrium, with its decline potentially influencing embryo implantation.
Area of Science:
- Reproductive Endocrinology
- Gestation and Reproduction
- Cellular and Molecular Biology
Background:
- Hormonal regulation of matrix metalloproteinase-26 (MMP-26) in the primate endometrium remains incompletely understood.
- Clarifying the roles of estrogen and progesterone in MMP-26 regulation is crucial for understanding endometrial function.
Purpose of the Study:
- To elucidate the specific regulatory effects of estrogen and progesterone on MMP-26 expression in the rhesus macaque endometrium.
- To correlate MMP-26 localization and expression patterns with key endometrial phases and hormonal receptor status.
Main Methods:
- Ovariectomized rhesus macaques underwent controlled hormonal treatments simulating the menstrual cycle.
- Endometrial tissue was collected across proliferative and secretory phases for MMP-26 quantification (real-time PCR).
- Localization of MMP-26 transcript and protein was determined using in situ hybridization and immunohistochemistry, correlated with estrogen receptor 1 and progesterone receptor (PGR).
Main Results:
- MMP-26 was exclusively detected in glandular epithelium, absent in stroma and vasculature.
- Progesterone significantly stimulated MMP-26 expression in early and mid-secretory phases, independent of estrogen.
- MMP-26 levels decreased in the late secretory phase, correlating with reduced glandular epithelial PGR.
Conclusions:
- Endometrial MMP-26 expression is primarily progesterone-dependent during the early secretory phase.
- MMP-26 serves as a marker for the pre-decidual, secretory endometrium in macaques.
- The decline in MMP-26 and epithelial PGR in the late secretory phase may influence the uterine receptivity window for embryo implantation.
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