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Updated: Sep 18, 2026

Isolation of Primary Human Decidual Cells from the Fetal Membranes of Term Placentae
Published on: April 30, 2018
Absence of Receptor Mediated Functional Progesterone Withdrawal in the Decidua During Labor-like Inflammatory
Jessica Selim1, Tilu Thomas1, Rheanna Urrabaz-Garza1
1Division of Basic Science and Translational Research, Department of Obstetrics and Gynecology, The University of Texas Medical Branch at Galveston, Galveston, Texas, USA.
Problem:
Preterm birth and dysregulated labor remain the leading causes of neonatal morbidity, yet the mechanisms governing progesterone (P4) signaling and inflammatory regulation within the decidua parietalis at the feto-maternal interface are poorly understood. In particular, the roles of progesterone receptor membrane components PGRMC1 and PGRMC2 in maintaining decidual immune homeostasis during pregnancy and labor remain undefined.
Methods:
of Study:Human decidua parietalis cells were cultured under pregnancy- and labor-like conditions, with and without immune cell co-culture. Expression of PGRMC1, PGRMC2, and PR-A/B and their interaction with P4 were assessed. Labor-associated inflammation was modeled using lipopolysaccharide (LPS). SiRNA targeted knockdown of PGRMC2 was performed to evaluate effects on progesterone receptor expression, cell-cycle progression, progesterone metabolism (AKR1C1/2) and inflammatory cytokine production.
Results:
PGRMC1, PGRMC2, and PR-A/B expression remained stable across gestational conditions, and P4 robustly interacted with PGRMCs. LPS-induced inflammation was not suppressed by P4 despite preserved receptor expression. PGRMC2 knockdown did not alter progesterone receptor expression, cell-cycle progression, or progesterone metabolism; however, it significantly increased baseline and stimulus-induced IL-6 and TNF levels. Under labor-like inflammatory conditions, loss of PGRMC2 markedly amplified cytokine production.
Conclusions:
These findings identify PGRMC2 as an important regulator of decidual immune homeostasis; however, the translational relevance of this role remains limited, as neither our pregnancy nor labor models produced a physiologically meaningful downregulation of PGRMC2 expression. Instead, our data support a model in which parturition-associated changes in decidua are driven primarily by inflammatory cues rather than by loss of progesterone receptor signaling, demonstrating tissue-specific progesterone signaling.
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