Progesterone Receptor Signaling Selectively Modulates Cytokine-Induced Global Gene Expression in Human Cervical

Douglas A Kniss1,2, Taryn L Summerfield1

  • 1Division of Maternal-Fetal Medicine and Laboratory of Perinatal Research, Department of Obstetrics and Gynecology, The Ohio State University, College of Medicine and Wexner Medical Center, Columbus, OH, United States.

Frontiers in Genetics
|October 16, 2020
PubMed

Insights

Vaginal progesterone may prevent preterm birth by modulating cervical fibroblast gene expression. This study reveals how progesterone and inflammation interact to influence cervical remodeling, offering insights into preterm birth prevention strategies.

Area of Science:

  • Reproductive biology and obstetrics
  • Molecular and cellular biology
  • Genomics and transcriptomics

Background:

  • Preterm birth (PTB) is a leading cause of infant mortality, with intrauterine inflammation playing a key role.
  • Cervical ripening involves complex biochemical and biomechanical changes, including extracellular matrix (ECM) remodeling.
  • Vaginal progesterone (P4) shows promise in preventing PTB in women with a short cervix.

Purpose of the Study:

  • To investigate the gene expression profiles of human cervical stromal fibroblasts under inflammatory and hormonal conditions relevant to parturition.
  • To determine the effects of interleukin-1β (IL-1β) and progesterone (P4) on fibroblast gene expression, both individually and in combination, following 17β-estradiol (17β-E2) priming.

Main Methods:

  • Primary culture of human cervical stromal fibroblasts.
  • Global gene expression analysis using microarrays.
  • Validation of gene and microRNA (miRNA) expression using quantitative real-time PCR (qRT-PCR) and NanoString® platforms.
  • Pathway analysis using KEGG, Panther, GO, and IPA.

Main Results:

  • IL-1β alone induced differential expression in 1432 transcripts, while P4 alone affected only 43 transcripts.
  • Highly upregulated transcripts included cytokines, chemokines, prostaglandin endoperoxide synthase-2 (PTGS-2), ECM proteins, ECM-degrading enzymes, and glycosaminoglycan (GAG) biosynthesis enzymes.
  • Differential expression of bradykinin receptors suggested a role for the kallikrein-kinin system in cervical response to cytokine and P4 challenge.

Conclusions:

  • This study provides a comprehensive gene expression database of cervical fibroblasts responding to inflammatory and hormonal stimuli.
  • Findings highlight the complex interplay between inflammation and progesterone in regulating cervical remodeling during preparation for parturition.
  • The results offer a foundation for further research into novel therapeutic targets for preventing preterm birth.

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