Genetically engineered Escherichia coli Nissle 1917 enabling on-site melanin synthesis attenuates radiation enteritis through ferroptosis inhibition and gut microbiota modulation

益生菌 大肠杆菌 化学 肠道菌群 微生物学 DNA损伤 促炎细胞因子 脂质过氧化 黑色素 基因工程 炎症 生物 活性氧 药物输送 再生(生物学) 药理学 公认安全 肠炎 DNA修复 放射性肠炎
作者
Chaoqun Lv,Hongqing Li,Xiang Li,Wen Shi,Wenbo Li,Zhenxing Li,Xiaolei Hu,Xi Liu,Yakubu AI,Zhipeng Wen,Feng Liu,Yi Ru,Hu Xiao,Jingchao Li,Xiao Chen,Kaijun Liu
出处
期刊:Redox biology [Elsevier BV]
卷期号:92: 104141-104141
标识
DOI:10.1016/j.redox.2026.104141
摘要

Radiation enteritis (RE) poses a clinically-relevant therapeutic challenge with limited effective interventions. Engineered probiotic drug delivery systems offer innovative strategies for precise treatment of inflammatory disease. However, both the practical efficacy and therapeutic mechanism of engineered probiotic agents for RE alleviation remains largely unclear. Herein, the melanin with natural radioprotective function was applied to modify engineered Escherichia coli Nissle 1917 that contains the tyrosinase gene (EcN-Tyr), which were further formulated into orally administrable microspheres (EcN-Tyr(A/C) 1 ) with natural sodium alginate and chitosan coatings via microfluidic approach. Notably, EcN-Tyr(A/C) 1 microspheres could successfully withstand gastric acid and actively target inflammatory lesions in the intestine. Mechanistically, EcN-Tyr(A/C) 1 microspheres enabled ferroptosis inhibition through reducing lipid peroxidation to protect the host from radiation damage. As a result, EcN-Tyr(A/C) 1 effectively alleviated radiation-induced intestinal inflammation, and reduced DNA damage. Furthermore, the administration of EcN-Tyr(A/C) 1 increased the abundance of beneficial bacteria, such as Akkermansia and Ligilactobacillus, while reducing the abundance of harmful bacteria, such as Escherichia-Shigella, clearly indicating the positive effects on the balance of gut microbiota. In summary, EcN-Tyr(A/C) 1 , as a novel probiotic carrier, shows great potential in the treatment of RE, and pioneers new avenues for leveraging natural biomaterials to treat RE. • Engineered melanin-modified probiotics target and alleviate radiation enteritis. • EcN-Tyr(A/C) 1 microspheres inhibit ferroptosis and reduce intestinal DNA damage. • Treatment restores gut balance by boosting good and reducing harmful bacteria.
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