Stiffness-dependent CMOT hydrogels promote mucosal repair in ulcerative colitis through YAP‑mediated mechanosensing in intestinal epithelial cells

自愈水凝胶 溃疡性结肠炎 再生(生物学) 化学 细胞生物学 信号转导 磷酸化 促炎细胞因子 炎症 癌症研究 河马信号通路 结肠炎 肠粘膜 组织重塑 染色体易位 炎症反应 炎症性肠病 上皮 组织修复 细胞 细胞信号 炎症性肠病 再生医学 免疫学 下调和上调 机械转化
作者
Guihua Chen,Zebin Fang,Meidan Feng,Zhining Ye,Zeyun Gu,Yongyin Xu,Haomeng Wu,Bin Tu,Wei Xiong,Xiangxue Ma,Y Huang,Shaogang Huang
出处
期刊:Journal of Nanobiotechnology [BioMed Central]
卷期号:24 (1)
标识
DOI:10.1186/s12951-026-04549-1
摘要

In this study, a series of mechanically tunable CMOT hydrogels was successfully developed, which enable colon‑targeted delivery and controlled degradation via dynamic Schiff‑base cross‑linking. Among them, the moderately stiff CMOT‑M hydrogel best mimics the native mechanical microenvironment of intestinal tissue, significantly alleviating DSS‑induced colitis symptoms, restoring the expression of tight‑junction proteins (ZO‑1, occludin), and suppressing excessive production of inflammatory cytokines (TNF‑α, IL‑6, IL‑1β). Mechanistic investigations revealed that the CMOT‑M hydrogel modulates the Hippo signaling pathway through integrin‑cytoskeletal tension transmission, thereby precisely tuning the phosphorylation status and nuclear translocation of YAP/TAZ: during the acute phase, it moderately activates YAP/TAZ to promote epithelial proliferation and migration; during the repair phase, it suppresses excessive YAP/TAZ activation, guiding stem‑cell differentiation and preventing fibrosis. After loading with the herbal formula QCXPY (CMOT@QCXPY), the hydrogel further synergistically inhibits the IL‑6/STAT3 pathway and reshapes the gut microbiota, establishing a multidimensional regulatory network integrating mechanical, immune, and microbial cues. This work demonstrates that material stiffness serves as a critical design parameter that can promote mucosal regeneration through YAP‑mediated mechanosensing, offering a novel mechano‑therapeutic strategy for ulcerative colitis.
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