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Updated: Jan 10, 2026

A Neonatal BALB/c Mouse Model of Necrotizing Enterocolitis
Published on: November 30, 2021
IL-27Ra promotes the progression of neonatal necrotizing enterocolitis
Yuling Yang1, Yingyan Liu1, Limei Zhong2
1Center for Medical Research On Innovation and Translation, Guangzhou First People's Hospital, the Second Affiliated Hospital of South China University of Technology, Guangzhou, 510000, Guangdong, China.
Insights
Interleukin-27 receptor alpha (IL-27Ra) exacerbates necrotizing enterocolitis (NEC) in premature infants by increasing inflammation and damaging the gut barrier. Blocking IL-27Ra may offer a dual therapeutic benefit for NEC.
Area of Science:
- Gastroenterology
- Immunology
- Neonatal Medicine
Background:
- Neonatal necrotizing enterocolitis (NEC) is a severe condition in premature infants, marked by immune imbalance and intestinal barrier defects.
- The role of Interleukin-27 receptor alpha (IL-27Ra) in NEC pathogenesis is not well understood, despite its known dual roles in inflammation.
Purpose of the Study:
- To investigate the function of IL-27Ra in the development of NEC.
- To evaluate IL-27Ra as a potential therapeutic target for NEC.
Main Methods:
- Integrative analysis of human NEC tissues using single-cell and bulk RNA sequencing.
- Induction of NEC in a neonatal mouse model with hyperosmolar feeding, LPS, hypoxia, and cold stress.
- Assessment using immunofluorescence, cytokine profiling (ELISA, qPCR), IL-27Ra knockout mice, and histopathology.
Main Results:
- IL-27Ra was upregulated in immune cells of NEC patient tissues, correlating with pro-inflammatory cytokines (IL-6) and reduced barrier proteins (TJP1).
- IL-27Ra knockout mice showed reduced NEC severity, lower IL-6 levels, and improved tight junction protein expression.
- IL-27Ra was found to promote NEC by enhancing intestinal inflammation and compromising the mucosal barrier.
Conclusions:
- IL-27Ra plays a significant role in promoting NEC pathogenesis.
- IL-27Ra represents a promising therapeutic target for NEC.
- Targeting IL-27Ra signaling could simultaneously reduce inflammation and restore intestinal barrier function in NEC.
Abstract:
Neonatal necrotizing enterocolitis (NEC) is a life-threatening gastrointestinal disease of premature infants, characterized by immune dysregulation and compromised intestinal barrier integrity. Interleukin-27 receptor α (IL-27Ra), a critical component of the JAK-STAT signaling pathway, exhibits dual pro- and anti-inflammatory roles in various inflammatory conditions. However, its role in NEC pathogenesis remains unclear. To elucidate the functional role of IL-27Ra in NEC development and assess its potential as a therapeutic target. A multi-tiered approach was employed, including integrative analysis of clinical NEC specimens by single-cell and bulk RNA sequencing, and a neonatal mouse NEC model. NEC was induced in mice via hyperosmolar formula feeding combined with LPS gavage, intermittent hypoxia, and cold stress. Additional experiments included immunofluorescence staining for IL-27Ra, cytokine profiling (ELISA, quantitative real-time PCR (qPCR)), use of IL-27Ra knockout (IL-27Ra-/-) mice, and histopathological scoring of intestinal injury. In NEC patient intestinal tissues, IL-27Ra expression was significantly upregulated in immune cells, with expression levels positively correlating with pro-inflammatory mediators (e.g., IL-6) and inversely correlating with barrier-associated proteins (e.g., TJP1). In the neonatal mouse NEC model, genetic ablation of IL-27Ra (IL-27Ra-/-) led to reduced histopathology scores, decreased IL-6 production (ELISA and qPCR), and restored tight junction protein expression (TJP1, OCLN). IL-27Ra promotes NEC by amplifying intestinal inflammation and damaging the mucosal barrier. Thus, IL-27Ra is identified as a promising therapeutic target. Pharmacological blockade of IL-27Ra signaling may provide a dual benefit in NEC-mitigating excessive inflammation while restoring barrier integrity. These findings are primarily derived from NEC mouse models and await clinical validation.

