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Aniline exposure induces intestinal inflammation and IBD-like pathological changes via ATF2-mediated apoptosis in mouse intestinal epithelial cells

细胞凋亡 下调和上调 化学 炎症 细胞生物学 活性氧 信号转导 肠绒毛 氧化应激 炎症性肠病 癌症研究 地穴 MAPK/ERK通路 p38丝裂原活化蛋白激酶 细胞信号 肠粘膜 细胞 趋化因子 肠上皮 免疫学 基因沉默 苯胺 活力测定 分子生物学 紧密连接 整合素αM 生物 小肠 程序性细胞死亡
作者
Yuanyuan Guo,Shuo Jin,Yuechen Xing,Bo Zhang,Xiaoyun Shao,Chunyi Zhang,Xinyu Fu,Zhongliang Duan,Jiaqi Fan,Yue Wang
出处
期刊:Ecotoxicology and Environmental Safety [Elsevier BV]
卷期号:309: 119537-119537
标识
DOI:10.1016/j.ecoenv.2025.119537
摘要

Aniline is a widely distributed environmental pollutant, but its impact on gut health and underlying mechanisms remain poorly understood. This study investigated the effects of aniline on intestinal epithelial cell apoptosis and intestinal inflammation, and explored the role of the ATF2 signaling pathway using in vitro and in vivo models. IEC-6 rat intestinal crypt epithelial cells were treated with different concentrations of aniline (0, 2.5, 5, 10, 20, 40 mM). Cell viability, apoptosis, reactive oxygen species (ROS) production, and signaling pathway activation were assessed by CCK-8 assay, flow cytometry, and Western blotting. In vivo, eight-week-old male C57BL/6 mice without pre-existing intestinal disease were exposed to aniline by daily oral gavage (10, 20, 40 mg/kg) for 14 days. Ileal tissues were analyzed by histopathology, immunohistochemistry, and Western blotting. Aniline exposure significantly reduced IEC-6 cell viability (≥ 5 mM), induced apoptosis and ROS generation, and activated the p38 MAPK pathway, accompanied by upregulation of pro-apoptotic proteins Bax and Cleaved-caspase-3 and downregulation of tight junction proteins ZO-1, occludin, and claudin-1. In mice, aniline exposure led to shortened small intestine length, inhibition of weight gain, crypt architectural damage, and inflammatory cell infiltration, together with increased expression of TNF-α, IL-17, and CD68 and decreased tight junction proteins. These changes indicate intestinal inflammation and disruption of the intestinal barrier with morphological and molecular features that resemble experimental inflammatory bowel disease (IBD). Mechanistically, aniline exposure markedly activated the ATF2 signaling pathway in ileal tissues. Silencing ATF2 in IEC-6 cells significantly attenuated aniline-induced apoptosis, ROS production, and the expression of inflammation-related proteins. Collectively, our findings demonstrate that aniline promotes intestinal epithelial cell apoptosis and disrupts the mucosal barrier via activation of the ATF2 pathway, thereby inducing intestinal inflammation with IBD-like pathological features. This work provides mechanistic insight into how environmental pollutants such as aniline may contribute to intestinal inflammatory diseases and identifies ATF2 as a potential molecular target for mitigating pollutant-related gut injury. However, because classic clinical indicators of IBD (e.g., diarrhea, hematochezia, disease activity index) were not assessed, our model should be interpreted as chemically induced intestinal inflammation rather than a complete IBD model.
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