Complement activation reflects severity of meconium aspiration syndrome in newborn pigs

Paal H H Lindenskov1, Albert Castellheim, Geir Aamodt

  • 1Department of Pediatric Research (PFI), Rikshospitalet University Hospital, N-0027 Oslo, Norway. p.h.h.lindenskov@klinmed.uio.no

Pediatric Research
|September 7, 2004
PubMed

Insights

Complement activation, indicated by the terminal sC5b-9 complex (TCC), plays a key role in meconium aspiration syndrome (MAS) lung injury and inflammation in newborns. This complement pathway activation precedes cytokine release, suggesting a primary role in MAS pathophysiology.

Area of Science:

  • Neonatal Medicine
  • Immunology
  • Pulmonary Medicine

Background:

  • Meconium aspiration syndrome (MAS) is a severe neonatal condition with an unclear inflammatory basis.
  • The role of the complement system in MAS-related lung injury and systemic inflammation requires further investigation.

Purpose of the Study:

  • To explore the involvement of complement activation in the pulmonary and systemic inflammatory responses during experimental MAS.
  • To investigate the relationship between complement activation, lung dysfunction, and cytokine release in MAS.

Main Methods:

  • Meconium aspiration syndrome (MAS) was induced in 12 piglets via lung instillation; 6 controls received saline.
  • Hemodynamics, lung function, plasma complement activation (sC5b-9 complex/TCC), and cytokine levels (IL-1beta, TNF-alpha, IL-10) were measured over 5 hours.
  • Correlations between TCC, lung dysfunction indices (oxygenation, ventilation, compliance), and cytokine levels were analyzed.

Main Results:

  • Terminal complement complex (TCC) levels significantly increased in MAS piglets compared to controls (p <0.0005).
  • Elevated TCC correlated strongly with impaired oxygenation (r=0.51) and ventilation (r=0.64), and inversely with lung compliance (r=-0.22).
  • Pro-inflammatory cytokines IL-1beta and TNF-alpha increased significantly in MAS, with complement activation preceding their release. Higher TCC was observed in non-surviving MAS piglets.

Conclusions:

  • Complement activation, measured by TCC, is significantly elevated in experimental MAS and closely linked to lung dysfunction.
  • Complement activation appears to precede the release of inflammatory cytokines, suggesting a primary role in MAS pathophysiology.
  • These findings highlight complement as a potential therapeutic target for mitigating lung injury in MAS.

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