Related Experiment Video
Updated: Sep 21, 2025

A Controlled Mouse Model for Neonatal Polymicrobial Sepsis
Published on: January 27, 2019
Surfactant Protein D Influences Mortality During Abdominal Sepsis by Facilitating Escherichia coli Colonization in
Jack Varon1, Antonio Arciniegas Rubio1, Diana Amador-Munoz1
1Division of Pulmonary and Critical Care Medicine, Department of Medicine, Brigham and Women's Hospital, Boston, MA.
Abstract:
Determine the role of surfactant protein D (SPD) in sepsis.
Design:
Murine in vivo study.
Setting:
Research laboratory at an academic medical center.
Patients:
SPD knockout (SPD-/-) and wild-type (SPD+/+) mice.
Interventions:
SPD-/- and SPD+/+ mice were subjected to cecal ligation and puncture (CLP). After CLP, Escherichia coli bacteremia was assessed in both groups. Cecal contents from both groups were cultured to assess for colonization by E. coli. To control for parental effects on the microbiome, SPD-/- and SPD+/+ mice were bred from heterozygous parents, and levels of E. coli in their ceca were measured. Gut segments were harvested from mice, and SPD protein expression was measured by Western blot. SPD-/- mice were gavaged with green fluorescent protein, expressing E. coli and recombinant SPD (rSPD).
Measurements And Main Results:
SPD-/- mice had decreased mortality and decreased E. coli bacteremia compared with SPD+/+ mice following CLP. At baseline, SPD-/- mice had decreased E. coli in their cecal flora. When SPD-/- and SPD+/+ mice were bred from heterozygous parents and then separated after weaning, less E. coli was cultured from the ceca of SPD-/- mice. E. coli gut colonization was increased by gavage of rSPD in SPD-/- mice. The source of enteric SPD in SPD+/+ mice was the gallbladder.
Conclusions:
Enteral SPD exacerbates mortality after CLP by facilitating colonization of the mouse gut with E. coli.
More Related Videos
06:45Colon Ascendens Stent Peritonitis CASP - a Standardized Model for Polymicrobial Abdominal Sepsis
Published on: December 18, 2010
06:22Surfactant Depletion Combined with Injurious Ventilation Results in a Reproducible Model of the Acute Respiratory Distress Syndrome ARDS
Published on: April 7, 2021