脂肪性肝炎
褐藻糖胶
脂多糖
势垒函数
紧密连接
癌症研究
生物
体内
肠道菌群
髓过氧化物酶
药理学
非酒精性脂肪性肝炎
肝损伤
医学
免疫学
炎症
脂肪肝
促炎细胞因子
巨噬细胞
肝硬化
微生态学
机制(生物学)
化学
癌症
作者
Yihang Cai,Y. Q. Chen,Xiqin Bian,Chuang Sun,Mengwei Chen,Haibo Liu,Lai Jin,Jianxin Ma,Wentao Liu
标识
DOI:10.1016/j.intimp.2026.116390
摘要
Chemotherapy-associated hepatotoxicity represents a critical limitation in cancer treatment, decreasing patient survival and quality of life. Irinotecan (CPT-11) is a key chemotherapeutic agent commonly used in the treatment of gastrointestinal malignancies. However, its clinical use is frequently limited by severe adverse effects, among which steatohepatitis has emerged as a critical dose-limiting toxicity. The mechanism of irinotecan-induced steatohepatitis remains unclear. In this study, we treated mice with CPT-11 to induce steatohepatitis and monitored intestinal barrier function using in vivo imaging. CPT-11-induced barrier disruption allowed bacterial lipopolysaccharide (LPS) to reach the liver, triggering neutrophil extracellular trap (NETs) formation, which played a pivotal role in driving hepatic inflammation. Administration of Fucoidan, a fucose-rich sulfated polysaccharide, restored intestinal tight junction proteins, partially improved gut microbiota composition, reduced LPS translocation, and suppressed hepatic NETs accumulation. What's more, depletion of gut microbiota with antibiotics worsened CPT-11-induced hepatotoxicity, suggesting the irreplaceability of fucoidan. These findings indicate the intestinal barrier dysfunction-activated 8 NETs formation drive CPT-11-induced steatohepatitis and targeting NETs while preserving gut barrier integrity with fucoidan may offer a promising and practical strategy to prevent chemotherapy-induced liver injury.
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