益生菌
失调
化学
抗氧化剂
活性氧
炎症性肠病
肠道菌群
生物
生物化学
细菌
医学
疾病
遗传学
病理
作者
Yong Zhu,Zeng Fang,Jie Bai,Longhui Wang,Jiaqing Chen,Zehua Zhang,Qiang Wang,Weiwei Sheng,Xue‐Yin Pan,Zhengyuan Gao,Dengqiu Xu,Pengkai Wu,Beicheng Sun
标识
DOI:10.1002/advs.202411939
摘要
Abstract Maintaining microbiota balance and enhancing the antioxidant performance of nanozyme‐based probiotic systems are crucial for effective inflammatory bowel disease (IBD) therapy. Despite significant advancements, developing a green and safe coating technology that functionalizes probiotics with nanozymes while preserving the activity of both components remains a challenge. To address this, chitosan‐modified epigallocatechin gallate (EGCG‐CS, EC)is synthesized, leveraging the intrinsic adhesive and coordination properties of polyphenols to capture gold nanozymes (AuNPs), forming ECA complexes that enhance nanozyme activity. When coated onto Escherichia coli Nissle 1917 (EcN), the resulting ECA@EcN system effectively scavenged reactive oxygen species (ROS), improving probiotic viability and promoting colon accumulation. Mechanistically, ECA protected EcN by suppressing the activation of the Flagellar Assembly and Branched‐Chain Amino Acid Synthesis pathways, ultimately alleviating inflammation and modulating intestinal microbial communities to relieve IBD symptoms. Given the biocompatibility of its components and the environmentally friendly assembly approach, this polyphenol‐nanozyme‐armored probiotic system represents a promising platform for IBD treatment.
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