类有机物
间充质干细胞
细胞生物学
细胞外小泡
化学
干细胞
肝纤维化
细胞分化
再生医学
细胞外
生物
纤维化
生物化学
病理
医学
基因
作者
Wenyi Chen,Xinyi Chen,Feiqiong Gao,Qigu Yao,Sheng Cheng,Qiaoling Pan,Jiong Yu,Jinfeng Yang,Guanghua Ma,Jianan Gong,Qian Li,Yunhua Chen,Lee Wei Lim,Ilia Stambler,Georgina M. Ellison,Brun Ulfhake,Robert Chunhua Zhao,Hongcui Cao
标识
DOI:10.1186/s12951-025-03617-2
摘要
Primary sclerosing cholangitis (PSC) pathogenesis involves immune dysregulation, genetic factors, and bile duct pathology; however, a comprehensive pathogenesis model and effective therapeutic strategies remain limited. Here, we develop a novel human liver multilineage organoid (Mulorg) model combined with Mdr2-/- mice to investigate the pro-fibrotic role of T helper 17 cells (Th17) and the therapeutic potential of mesenchymal stem cell-derived extracellular vesicles (EVMSC) for PSC, particularly periductal fibrosis. EVMSC alleviates interleukin-17A (IL-17A)-induced fibrotic Mulorgs (FibHOs) and mitigates periductal fibrosis in Mdr2-/- mice by inhibiting Th17 differentiation, decreasing Th17 numbers, and lowering intrahepatic IL-17A levels. Functional assays, miRNA array, and CUT & Tag analyses reveal that EVs-derived hsa-miR-7977 targets NFKBIZ, repressing IκBζ translation to reduce IL-17A and its downstream targets involved in Th17 differentiation, IL-17 signaling, and bile secretion pathways. Moreover, miR-7977-enriched EVMSC efficiently reduces IL-17A+ cell percentages in fibrotic areas and improves periductal fibrosis in Mdr2-/- mice. Co-culture of FibHOs with Th17 found miR-7977 inhibits Th17 migration to the periductal fibrosis area, with distinct morphological differences observed between patient- and healthy-derived FibHOs. These findings demonstrate that EV-derived miR-7977 mitigates the periductal fibrosis microenvironment by inhibiting Th17 differentiation and migration, the former by targeting NFKBIZ, regulating IL-17A and IκBζ-targeted gene expression. This study clarifies Th17's role in the PSC fibrotic microenvironment, underscores the modeling contributions of Mulorgs, and highlights EV-derived miR-7977's potential to ameliorate Th17-related periductal fibrosis, offering insights and novel therapeutic avenues for PSC.
科研通智能强力驱动
Strongly Powered by AbleSci AI