Decidual stromal cell-derived PGE2 regulates macrophage responses to microbial threat

Lisa M Rogers1, Anjali P Anders2, Ryan S Doster1

  • 1Division of Infectious Diseases, Department of Medicine, Vanderbilt University Medical Center, Nashville, Tennessee.

Abstract

Insights

Decidual stromal cells release prostaglandin E2 (PGE2) to suppress inflammatory responses during bacterial chorioamnionitis. This paracrine signaling in gestational membranes may be crucial for managing microbial threats and improving pregnancy outcomes.

Area of Science:

  • Reproductive immunology
  • Maternal-fetal medicine
  • Microbial pathogenesis

Background:

  • Bacterial chorioamnionitis is a major cause of adverse pregnancy outcomes.
  • Host-microbial interactions in gestational membranes, particularly the decidua, are not fully understood.
  • The decidua is a critical interface for ascending vaginal infections.

Purpose of the Study:

  • To investigate paracrine communication between decidual stromal cells and macrophages.
  • To determine how this communication shapes immune responses to microbial sensing.
  • To elucidate the role of prostaglandin E2 (PGE2) in modulating these interactions.

Main Methods:

  • In vitro modeling of decidual cell-macrophage interactions using dTHESCs and THP-1 cells.
  • Measurement of inflammatory mediators (e.g., TNF-α) and bacterial phagocytosis.
  • In vivo mouse model of ascending chorioamnionitis caused by Group B Streptococcus (GBS).

Main Results:

  • Coculture of decidual cells and macrophages enhanced most inflammatory mediators but suppressed macrophage TNF-α production.
  • Decidual cell-derived PGE2 was identified as a key mediator of this suppression.
  • In a mouse model, increased PGE2 was observed in amniotic fluid during GBS chorioamnionitis.

Conclusions:

  • Decidual stromal cells play a significant role in modulating the maternal immune response to microbial invasion.
  • The release of PGE2 by decidual cells is a critical mechanism for controlling inflammation in the gestational membranes.
  • These findings highlight potential therapeutic targets for managing chorioamnionitis and its complications.

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