促炎细胞因子
炎症性肠病
免疫系统
溃疡性结肠炎
化学
紧密连接
结肠炎
势垒函数
微泡
炎症
体外
粘蛋白
免疫学
外体
肠道菌群
背景(考古学)
微生物学
生物相容性
药理学
细胞生物学
细胞因子
巨噬细胞
肠粘膜
癌症研究
纳米载体
先天免疫系统
作者
M Wang,Zixin Shao,Zhijian Ke,Haiguang Mao,Lili Qi,Yi-Xiang Wang
标识
DOI:10.1038/s41538-026-00880-x
摘要
Inflammatory bowel disease (IBD) is a chronic intestinal disorder characterized by intestinal barrier dysfunction and immune dysregulation, with limited safe and effective therapeutic options available. Owing to their biocompatibility and bioactivity, plant exosome-like nanoparticles (PELNs) have emerged as promising natural nanotherapeutics. In this study, exosome-like nanovesicles from Chinese bayberry (Myrica rubra) were isolated, characterized, and termed BELNs to investigate their therapeutic potential against IBD. Purified BELNs exhibited a typical bilayer membrane structure with a 100-300 nm size. Lipidomic, proteomic, and miRNA sequencing analyses revealed that BELNs contain bioactive components, including diacylglycerols, sphingomyelin, specific proteins, miRNAs, and polyphenols like cyanidin-3-O-glucoside. In vitro experiments demonstrated that BELNs were internalized by RAW 264.7 macrophages via galactose-mediated endocytosis, reducing LPS-induced proinflammatory cytokines (TNF-α and IL-1β) and increasing anti-inflammatory IL-10. In vivo, orally administered BELNs accumulated predominantly in the murine gastrointestinal tract. In a DSS-induced IBD model, BELNs alleviated disease symptoms, preserved intestinal tissue integrity, and enhanced barrier function by upregulating tight junction protein ZO-1 and mucin MUC2. Additionally, BELNs remodeled the gut microbiota by decreasing Escherichia-Shigella and enriching beneficial short-chain fatty acid-producing bacteria. These findings highlight BELNs' potential as safe and effective nanotherapeutics for treating ulcerative colitis through immunoregulation, barrier repair, and microbiota modulation.
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