2D Nanozymes Modulate Gut Microbiota and T‐Cell Differentiation for Inflammatory Bowel Disease Management

Author:

Jiang Kai1,Cao Xiangjing1,Wu Haitao2,Xu Yifeng1,Liu Lulu1,Qian Haisheng3,Miao Zhaohua1ORCID,Wang Hua2,Ma Yan3

Affiliation:

1. School of Food and Biological Engineering Hefei University of Technology Hefei 230009 China

2. Department of Oncology The First Affiliated Hospital of Anhui Medical University Hefei 230022 China

3. School of Biomedical Engineering Anhui Medical University Hefei 230022 China

Abstract

AbstractIntestinal commensal microbiota dysbiosis and immune dysfunction are significant exacerbating factors in inflammatory bowel disease (IBD). To address these problems, Pluronic F‐127‐coated tungsten diselenide (WSe2@F127) nanozymes are developed by simple liquid‐phase exfoliation. The abundant valence transitions of elemental selenium (Se2−/Se4+) and tungsten (W4+/W6+) enable the obtained WSe2@F127 nanozymes to eliminate reactive oxygen/nitrogen species. In addition, the released tungsten ions are capable of inhibiting the proliferation of Escherichia coli. In a model of dextran sodium sulfate‐induced colitis, WSe2@F127 nanozymes modulate the gut microbiota by increasing the abundance of bacteria S24‐7 and significantly reducing the abundance of Enterobacteriaceae. Moreover, WSe2@F127 nanozymes inhibit T‐cell differentiation and improve intestinal immune barrier function in a model of Crohn's disease. The WSe2@F127 nanozymes effectively alleviate IBD by reducing oxidative stress damage, modulating intestinal microbial populations, and remodeling the immune barrier.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Anhui Province

Publisher

Wiley

Subject

Pharmaceutical Science,Biomedical Engineering,Biomaterials

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