Inflammation in fetal sheep from intra-amniotic injection of Ureaplasma parvum

Jennifer J P Collins1, Suhas G Kallapur, Christine L Knox

  • 1Dept. of Pediatrics, Maastricht Univ. Medical Center, The Netherlands.

Insights

Ureaplasma parvum exposure in fetal sheep causes acute lung inflammation and alters elastin and alpha-smooth muscle actin deposition, potentially impacting lung development and structure.

Area of Science:

  • Perinatal medicine
  • Neonatal respiratory research
  • Fetal development

Background:

  • Bronchopulmonary dysplasia is linked to chorioamnionitis and fetal lung inflammation.
  • Ureaplasma species are common in chorioamnionitis and chronic exposure causes lung inflammation in fetal sheep.
  • Limited data exists on the effects of shorter ureaplasma exposures on fetal lung development.

Purpose of the Study:

  • To investigate the hypothesis that ureaplasmas induce an acute inflammatory response altering fetal lung development.
  • To assess the impact of acute Ureaplasma parvum exposure on fetal lung inflammation and structural components.

Main Methods:

  • Singleton ovine fetuses received intra-amniotic Ureaplasma parvum or control media at different gestational ages.
  • Inflammation assessed via bronchoalveolar lavage fluid (BALF) cell counts and cytokine mRNA.
  • Lung tissue analyzed for inflammatory cells (immunohistochemistry, flow cytometry) and extracellular matrix proteins (elastin, α-SMA).

Main Results:

  • Neutrophils increased in BALF 3 days post-exposure (P=0.01).
  • Myeloperoxidase-positive cells (3 days) and MHC class II-positive cells (14 days) increased.
  • Elastin deposition decreased in alveolar septa (14 days, P=0.002), while α-SMA increased in arteries and bronchioli.

Conclusions:

  • Ureaplasma parvum induces a mild acute inflammatory response in the fetal sheep lung.
  • Exposure alters elastin and α-smooth muscle actin deposition, potentially affecting lung structure and development.
  • These findings suggest a mechanism by which acute ureaplasma exposure may contribute to adverse lung outcomes.

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