Paediatric sepsis survivors are resistant to sepsis-induced long-term immune dysfunction

David F Colón1,2, Carlos W Wanderley1,3, Walter M Turato1

  • 1Center of Research in Inflammatory Diseases (CRID), University of São Paulo, Ribeirão Preto, Brazil.

PubMed

Insights

Age dictates the immune response to sepsis. Paediatric sepsis survivors show resistance to secondary infections, unlike adults, due to lower Interleukin-33 (IL-33) levels and regulatory T cell (Treg) expansion.

Area of Science:

  • Immunology
  • Paediatric critical care
  • Infectious disease

Background:

  • Sepsis survivors often experience immunosuppression and secondary infections.
  • The axis IL-33/ILC2s/M2 macrophages/Tregs mediates adult post-sepsis immunosuppression.
  • Long-term immune effects of pediatric sepsis remain unclear.

Purpose of the Study:

  • To investigate the role of age in sepsis-induced immunosuppression.
  • To compare immune responses in infant versus adult post-septic mice.
  • To assess clinical differences in adult and pediatric sepsis survivors.

Main Methods:

  • Compared regulatory T cell (Treg) frequency and IL-33/ILC2s axis activation in post-septic infant and adult mice.
  • Assessed DNA methylation in lung epithelial cells of post-septic mice.
  • Challenged sepsis-surviving mice with Pseudomonas aeruginosa and B16 melanoma.
  • Measured IL-33 levels and Treg frequency in adult and pediatric sepsis survivor blood samples.

Main Results:

  • Two-week-old mice were resistant to secondary infections and tumor challenges, unlike 6-week-old mice.
  • Post-septic 6-week-old mice showed increased IL-33, Tregs, ILC2s, and M2 macrophages; 2-week-old mice did not.
  • Impaired IL-33 production in young mice correlated with lung epithelial cell DNA methylation.
  • IL-33 administration induced immunosuppression in young mice.
  • Adult sepsis survivors had higher IL-33 and Tregs than pediatric survivors.

Conclusions:

  • Interleukin-33 (IL-33) plays a critical, age-dependent role in post-sepsis immunosuppression.
  • Age significantly influences the development of immunosuppression following sepsis.
  • Understanding these age-dependent mechanisms can inform differential treatments for pediatric and adult sepsis.
Abstract

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