Yijia Wang, Baozhu Chen, Xing Deng, Nan Li, Shiqi Yang, Fei Ma, Guiying Zhuang, Xiaoyan Gao, Miaomiao Xu, Xiaotao Jiang, Lina Wang, Shunchang Luo, Sitao Li
Prophylactic MEL ameliorates NEC-associated brain injury by activating AMPK to suppress IL-1β production, thereby inhibiting chronic M1 microglial polarization. This AMPK-IL-1β axis represents a key therapeutic target, with MEL providing dual gut-brain protection.
BACKGROUND: Necrotizing enterocolitis (NEC) is a severe neonatal gastrointestinal disease. Its associated brain injury involves neuroinflammation and long-term cognitive impairment, yet specific therapies are lacking. Melatonin (MEL) has shown neuroprotective effects, but its role in NEC-associated brain injury remains unclear.
METHODS: Neonatal C57BL/6 J mice were subjected to NEC induction and studied at short-term (acute) and long-term (chronic, up to 9 weeks). Cognitive function was assessed by Y-maze and open field tests. Microglial activation, inflammatory cytokine expression, and AMPK pathway activity were analyzed in mouse brain tissue and in LPS/IL-1β-stimulated peritoneal macrophages with pharmacological interventions.
RESULTS: Prophylactic MEL improved survival and intestinal injury, and reversed NEC-induced long-term spatial memory deficits. NEC triggered a sustained M1 microglial polarization in the hippocampus that persisted into adulthood, which was durably attenuated by MEL. IL-1β was identified as the most prominently upregulated cytokine, and transcriptomic profiling confirmed enrichment of IL-1β-related pathways. In vitro, recombinant IL-1β directly drove M1 polarization, while IL-1β neutralization blocked this effect. Mechanistically, MEL restored AMPK phosphorylation in NEC brains, and AMPK inhibition abolished the MEL-mediated suppression of M1 polarization.
CONCLUSIONS: Prophylactic MEL ameliorates NEC-associated brain injury by activating AMPK to suppress IL-1β production, thereby inhibiting chronic M1 microglial polarization. This AMPK-IL-1β axis represents a key therapeutic target, with MEL providing dual gut-brain protection.