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Updated: Aug 30, 2026

Development of a Neonatal Piglet Acute Lung Injury Model Recreating the Early Environment of Preterm Infant Lungs
Published on: October 31, 2025
Meconium is a potent activator of complement in human serum and in piglets
Albert Castellheim1, Paal H H Lindenskov, Anne Pharo
1Department of Pediatric Research, Rikshospitalet University Hospital, Oslo 0027, Norway. albert.castellheim@klinmed.uio.no
Abstract:
Meconium aspiration syndrome (MAS) is a clinical condition in the newborn infant with a significant morbidity and mortality. The complex pathophysiology of MAS, leading to both pulmonary and systemic complications, is characterized by an incompletely understood inflammatory reaction. Treatment is symptomatic, mainly limited to airway cleaning and ventilatory support. In this study, we show for the first time that meconium is a potent activator of complement, a key mediator of inflammation. In vitro, meconium activated the alternative complement pathway in human umbilical cord serum as judged by a substantial increase in the alternative pathway convertase C3bBbP. The activation proceeded through C3 (C3bc) and the terminal C5-9 pathway (terminal SC5b-9 complement complex), whereas the classical and lectin pathways were not activated (C1rs-C1-inhibitor complexes and C4bc). The lipid fraction, containing, e.g. free fatty acids, and the water fraction, containing, e.g. bile acids, contributed equally to the complement activation. A blocking antibody to factor D (alternative pathway) completely inhibited the meconium-induced complement activation, whereas blocking antibodies to mannose-binding lectin (lectin pathway) and C2 (classical and lectin pathway) had no effect. In vivo, meconium induced systemic complement activation in a piglet model of MAS, paralleling the increase in lung dysfunction. In conclusion, meconium is a potent activator of the complement system both in vitro and in vivo. Complement may be important in the pathogenesis of MAS, and specific complement inhibition might be a possible treatment approach in MAS.
Insights
Meconium activates the complement system, a key inflammatory mediator, in newborns. This finding suggests complement inhibition could be a novel treatment for meconium aspiration syndrome (MAS).
Area of Science:
- Neonatal immunology
- Inflammatory pathways
- Complement system biology
Background:
- Meconium aspiration syndrome (MAS) causes significant newborn morbidity and mortality.
- The inflammatory mechanisms underlying MAS are not fully understood.
- Current MAS treatments are primarily symptomatic.
Purpose of the Study:
- To investigate meconium's role in activating the complement system.
- To identify specific complement pathways activated by meconium.
- To explore complement inhibition as a potential therapeutic strategy for MAS.
Main Methods:
- In vitro studies using human umbilical cord serum to assess complement activation by meconium.
- Analysis of complement pathway activation (alternative, classical, lectin) using specific markers.
- In vivo studies using a piglet model of MAS to evaluate systemic complement activation and lung dysfunction.
Main Results:
- Meconium potently activated the alternative complement pathway in vitro, confirmed by increased C3bBbP levels.
- Both lipid and water fractions of meconium contributed to complement activation.
- Meconium induced systemic complement activation in vivo, correlating with lung dysfunction in piglets.
Conclusions:
- Meconium is a potent activator of the complement system via the alternative pathway, both in vitro and in vivo.
- Complement activation may play a crucial role in MAS pathogenesis.
- Targeting the complement system offers a potential new treatment avenue for MAS.
