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Updated: Jan 26, 2026

Simplified Human Neutrophil Extracellular Traps NETs Isolation and Handling
Published on: April 16, 2015
Neutrophil extracellular traps (NETs) exacerbate severity of infant sepsis
David F Colón1, Carlos W Wanderley2, Marcelo Franchin3
1Department of Biochemistry and Immunology, School of Medicine of Ribeirão Preto, University of São Paulo, Ribeirão Preto, 14049-900, SP, Brazil.
Insights
Infants produce more neutrophil extracellular traps (NETs) during sepsis, leading to worse organ injury. Inhibiting NETs improved outcomes in infant mice and may be a therapeutic target for pediatric sepsis.
Area of Science:
- Immunology
- Pediatrics
- Critical Care Medicine
Background:
- Neutrophil extracellular traps (NETs) are crucial innate immune components implicated in organ dysfunction.
- The specific role of NETs in pediatric sepsis pathogenesis remains largely unexplored.
Purpose of the Study:
- To investigate the role and impact of NETs in infant and pediatric sepsis.
- To explore NETs as a potential therapeutic target for pediatric sepsis.
Main Methods:
- Sepsis was induced in infant and adult mice via bacterial or LPS injection.
- Key parameters measured included neutrophil infiltration, bacteremia, organ injury, cytokine levels, and NET concentrations.
- NETs' functional role was assessed using rhDNase and PAD-4 inhibitor treatments in infant septic mice.
Main Results:
- Infant mice exhibited significantly higher NET production, increased organ injury, and elevated inflammatory cytokines compared to adults.
- NET formation in infants was linked to increased Padi4 expression and histone H3 citrullination.
- Treatment with rhDNase or a PAD-4 inhibitor attenuated sepsis severity in infant mice.
Conclusions:
- Pediatric sepsis is associated with elevated NET levels, correlating positively with disease severity.
- NETs represent a novel mechanism contributing to pediatric sepsis susceptibility.
- Targeting NETs offers a promising therapeutic strategy for improving pediatric sepsis outcomes.
Background:
Neutrophil extracellular traps (NETs) are innate defense mechanisms that are also implicated in the pathogenesis of organ dysfunction. However, the role of NETs in pediatric sepsis is unknown.
Methods:
Infant (2 weeks old) and adult (6 weeks old) mice were submitted to sepsis by intraperitoneal (i.p.) injection of bacteria suspension or lipopolysaccharide (LPS). Neutrophil infiltration, bacteremia, organ injury, and concentrations of cytokine, NETs, and DNase in the plasma were measured. Production of reactive oxygen and nitrogen species and release of NETs by neutrophils were also evaluated. To investigate the functional role of NETs, mice undergoing sepsis were treated with antibiotic plus rhDNase and the survival, organ injury, and levels of inflammatory markers and NETs were determined. Blood samples from pediatric and adult sepsis patients were collected and the concentrations of NETs measured.
Results:
Infant C57BL/6 mice subjected to sepsis or LPS-induced endotoxemia produced significantly higher levels of NETs than the adult mice. Moreover, compared to that of the adult mice, this outcome was accompanied by increased organ injury and production of inflammatory cytokines. The increased NETs were associated with elevated expression of Padi4 and histone H3 citrullination in the neutrophils. Furthermore, treatment of infant septic mice with rhDNase or a PAD-4 inhibitor markedly attenuated sepsis. Importantly, pediatric septic patients had high levels of NETs, and the severity of pediatric sepsis was positively correlated with the level of NETs.
Conclusion:
This study reveals a hitherto unrecognized mechanism of pediatric sepsis susceptibility and suggests that NETs represents a potential target to improve clinical outcomes of sepsis.
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