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March 10, 2026Cell Communication and Signaling1 citationsOpen Access

Deficiency of interleukin-40 prevents intestinal damage in experimental necrotizing enterocolitis by inhibiting NETosis

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YZYunfei ZhangChildren's Hospital of Chongqing Medical UniversityCYCuilian YeChongqing University of TechnologyXZXin ZhongHunan Normal University

Key Points

  • This research aims to explore the role of interleukin-40 in necrotizing enterocolitis and its effects on neutrophil function and intestinal damage.
  • Measured IL-40 levels in clinical samples from infants with necrotizing enterocolitis and controls.
  • Established experimental models using IL-40 knockout and wild-type mice to evaluate NEC severity.
  • Performed mechanistic studies to assess mitochondrial reactive oxygen species and oxidized mitochondrial DNA related to NET formation.
  • IL-40 levels were significantly higher in NEC patients than in control subjects, correlating with increased NET formation.
  • IL-40−/− mice exhibited reduced severity of NEC, lower neutrophil infiltration, and less NET release.
  • Lack of IL-40 decreased mitochondrial reactive oxygen species production and the release of oxidized mitochondrial DNA.

Abstract

Necrotizing enterocolitis (NEC) is a severe inflammatory condition that affects premature infants, marked by intestinal necrosis and systemic inflammation. This study examined interleukin-40 (IL-40) levels in patients with NEC and investigated its influence on inflammation, neutrophil function, and the formation of neutrophil extracellular traps (NET) using clinical samples and experimental models. Intestinal tissue samples were obtained from infants diagnosed with NEC and from control subjects, with plasma IL-40 levels subsequently measured. An experimental NEC model was established employing IL-40 knockout (IL-40−/−) and wild-type (WT) mice to assess the effects of IL-40 deficiency on disease progression. Results indicated that IL-40 levels were significantly elevated in NEC patients compared to controls, correlating with enhanced NET formation and greater disease severity. In the murine model, IL-40−/− mice demonstrated reduced NEC severity, lower neutrophil infiltration, and diminished NET release. Mechanistic studies indicated that the absence of IL-40 decreased mitochondrial reactive oxygen species (ROS) production and the release of oxidized mitochondrial DNA (ox-mtDNA), both crucial for NET formation. In conclusion, this study highlights the significant role of IL-40 in NEC by promoting neutrophil activation and NETosis. Targeting IL-40 may present a promising therapeutic approach to mitigate intestinal damage in NEC by inhibiting NETosis and reducing inflammation.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69af949670916d39fea4b96ehttps://doi.org/10.1186/s12964-026-02769-4
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