化学
炎症性肠病
细胞生物学
细胞外小泡
TLR2型
信号转导
细胞外
小泡
细胞内
细胞信号
生物化学
胞外囊泡
发病机制
调制(音乐)
微泡
疾病
溃疡性结肠炎
CD81号
作者
Jiarun Xu,Guoyue Wei,Jianfeng Wang,Haoran Wang,Jian He,Jiaqi Xu,Wenguo Cao,Jialin Wang,Qi Shen,Nasi Ai,Yufang Su,Huaxi Yi,Lingjun Tong
出处
期刊:Cell Reports
[Cell Press]
日期:2026-05-28
卷期号:45 (6): 117438-117438
标识
DOI:10.1016/j.celrep.2026.117438
摘要
Pre-inflammatory bowel disease (pre-IBD) represents a transitional state between irritable bowel syndrome and IBD, characterized by heightened susceptibility to mucosal inflammation driven by chronic high-fat diet intake and antibiotic exposure. However, effective intervention strategies remain poorly defined. Here, we identify milk-derived extracellular vesicles (mEVs) as a potent nanotherapeutic capable of attenuating pre-IBD pathology. Pre-IBD mice displayed marked gut microbiota dysbiosis and mucosal inflammation, both of which were substantially ameliorated by oral mEVs administration. Mechanistically, mEVs restored microbial homeostasis by enriching Lactobacillus murinus (L. murinus), which in turn reduced lysophosphatidylcholine (LPC) accumulation, two factors that exerted opposing and functionally instructive effects on intestinal inflammation. LPC activated the TLR2/MAPK axis to promote M1 polarization, whereas L. murinus engaged the TLR2/STAT3 pathway to drive M2 polarization. Collectively, these findings demonstrate that mEVs reprogram TLR2-dependent macrophage responses by modulating LPC and L. murinus, thereby mitigating mucosal inflammation and preventing the progression of pre-IBD.
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